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Reference: AS13 2662
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ZTL Zeitlupe (Adagio Protein 1) is a component of an E3 ubiquitin ligase complex which is playing a central role in blue light-dependent circadian cycles. Alternative names: Adagio protein 1 (ADO1), F-box only...
Reference: AS08 318
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HvZIP7 (zinc regulated ZRT/IRT-like transporter protein 7) is a plasma membrane bound protein potentially involved in Zn homeostasis in plants.
Reference: AS15 3092
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Zeaxanthin Epoxidase (ZEP) catalyses the O2-/NAPDHdependent epoxidation of zeaxanthin to violaxanthin via antheraxanthin at the stromal side of the thylakoid membrane of green plants. ZEP also functions in the first...
Reference: AS12 1848
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COG0523 (Zinc defficiency induced protein) is a putative metal chaperone from G3E family of GTPases which acts in metal trafficking.
Reference: AS14 2770
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ZCP1 belongs to a large family of putative metallochaperones, likned with maintainance of zinc homeostasis in all living organisms.
Reference: AS18 4177
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YFP (Yellow Fluorescent Protein) is a genetic mutant of green fluorescent protein (GFP). YFP has an excitation peak at 514 nm and emission peak at 527 nm.
Reference: AS05 057
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Yersinia pseudotuberculosis is a food- and water-borne pathogen which causes self-limiting gastrointestinal infections in healthy humans.
Reference: AS07 274
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Ycf3 together with Ycf4 have been found as extrinistic thylakoid membrane proteins which are required for the accumulation of PSI complex in Chlamydomonas reinhardii.
Reference: AS07 273
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Ycf3 together with Ycf4 have been found as extrinistic thylakoid membrane proteins which are required for the accumulation of PSI complex in Chlamydomonas reinhardii.
Reference: AS07 267
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This antibody specifically cross-reacts against xylose residues bound to the protein N-glycans in beta1,2. This residue is characterisitc of the plant protein N-glycans and is absent in protein N-glycans from animals....
Reference: AS18 4205-1ml
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The plant cell wall surrounds the plant cell as a complex network of polysaccharides classed as: cellulose, hemicelluloses and pectic polysaccharides and glycoproteins. Anchored to or embedded into plant cell wall...
Reference: AS18 4204-1ml
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The plant cell wall surrounds the plant cell as a complex network of polysaccharides classed as: cellulose, hemicelluloses and pectic polysaccharides and glycoproteins. Anchored to or embedded into plant cell wall...
Reference: AS18 4203-1ml
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The plant cell wall surrounds the plant cell as a complex network of polysaccharides classed as: cellulose, hemicelluloses and pectic polysaccharides and glycoproteins. Anchored to or embedded into plant cell wall...
Reference: AS20 4492-1ml
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Xyloglucan is a hemiceullose or polysaccharide that is found in the primary cell wall of all vascular plants. Xyloglucan binds to the surface of cellulose microfibrils and may link them together.
Reference: AS16 3228-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS16 3229-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS16 3239-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS16 3238-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS16 3227-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS16 3135-1ml
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Xylans are polysaccharides and belong to a group of hemicelluloses found in cell walls of plants and in red and green algae. Their backbones are built by beta-1,4-linked xylosyl residues.
Reference: AS08 319
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Molecular interactions between wall polysaccharides, which include cellulose and a range of non-cellulosic polysaccharides such as xyloglucans and (1,3;1,4)-?-d-glucans, are fundamental to cell wall properties. These...
Reference: AS11 1759
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WUSCHEL is a transcription factor which plays a central role during early embryogenesis, oogenesis, flowering.
Reference: AS16 3851
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WRKY10 belongs to a superfamily of TFs having WRKY and zinc finger domains.
Reference: AS16 3952
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WHIRLY proteins are multifunctional DNA/RNA-binding proteins (Prikryl et al. 2008, NAR 36: 5152-5165). WHIRLY1 was shown to be located both in chloroplasts and nucleus (Grabowski et al. 2008, Plant Physiology...
Reference: AS16 3953
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WHIRLY proteins are multifunctional DNA/RNA-binding proteins (Prikryl et al. 2008, NAR 36: 5152-5165). WHIRLY1 was shown to be located both in chloroplasts and nucleus (Grabowski et al. 2008, Plant Physiology...
Reference: AS09 571
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Wheat (Triticum aestivum) gluten consists of storage proteins known as gliadin and glutenin. Some individuals in population are gluten sensitive
Reference: AS19 4331
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Wheat gliadin is a class of proteins being a main component of gluten fraction and present in wheat and other cereals.
Reference: AS06 127
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Vitellogen (VTG) is a glucolipoprotein yolk precursor produced by all oviparous animals. This protein is female-specific and its expression is under hormonal control (estrogen). However, in the presence of Endocrine...
Reference: AS20 4407
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Vacuolar-sorting receptor (VSR) involved in clathrin-coated vesicles sorting from Golgi apparatus to vacuoles. Required for the sorting of 12S globulin, 2S albumin and maybe other seed storage proteins to protein...
Reference: AS08 341
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Plants with a winter growth habit flower earlier when exposed for several weeks to cold temperatures, a process called vernalization. The wheat vernalization gene VRN-2 is a dominant repressor of flowering that is...
Reference: AS13 2690
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VRL-1 is ubiquitously expressed. Expressed in dorsal root ganglia, trigeminal ganglia, spinal chord (Lissauer's tract, dorsal horn and dorsal columns) (at protein level). PTM: N-glycosylated. PTM: Phosphorylated by...
Reference: AS20 4401
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VSP29 (Vacuolar protein sorting-associated protein 29) plays a role in vesicular protein sorting. Component of the membrane-associated retromer complex which is essential in endosome-to-Golgi retrograde transport....
Reference: AS13 2633
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VPS29 (vacuolar protein sorting 29) is a part of a retromer-like protein complex involved in endosome to lysosome protein transport. Synonymes:Vacuolar protein sorting-associated protein 29, Protein MAIGO 1.
Reference: AS13 2632
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VPS26A (Vacuolar protein sroting 26A) is a part of a retromer-like protein complex involved in endosome to lusosome protein transport. Synonymes: vesicle protein sroting 26A.
Reference: AS13 2636
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VP1 | Viviparous 1 (ABI3) is a transcription factor, which participates in abscisic acid-regulated gene expression during seed development. Alternative names: B3 domain-containing transcription factor ABI3, Protein...
Reference: OV-100
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-30
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-15
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-05
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: VM-100
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: VM-30
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: VM-15
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: HMSK-1
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HM-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HM-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H2-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H2-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H1-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H1-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HSK-WB-200
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The Visikol HISTO Washing Buffer 10X is used for the Visikol HISTO immunolabeling process. This solution is a concentrate and is comprised of: PPBS with 0.2% Tween-20 and 10µg/mL heparin. This solution should be...
Reference: HSK-WB-70
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The Visikol HISTO Washing Buffer 10X is used for the Visikol HISTO immunolabeling process. This solution is a concentrate and is comprised of: PPBS with 0.2% Tween-20 and 10µg/mL heparin. This solution should be...
Reference: HSK-1
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HSK-PMB-100
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It is recommend that if you are trying to use Visikol HISTO-1 and Visikol HISTO-2 with larger, more collagenous, and difficult to clear tissues (e.g. liver tissue, archived human tissue, etc.) that you incubate...
Reference: HSK-PMB-30
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It is recommend that if you are trying to use Visikol HISTO-1 and Visikol HISTO-2 with larger, more collagenous, and difficult to clear tissues (e.g. liver tissue, archived human tissue, etc.) that you incubate...
Reference: HSK-PB-100
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Visikol HISTO Penetration Buffer is used with the Visikol HISTO immunolabeling process and is comprised of PBS / 0.2% Tween™20 / 0.3 M glycine / 20% DMSO.
Reference: HSK-PB-30
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Visikol HISTO Penetration Buffer is used with the Visikol HISTO immunolabeling process and is comprised of PBS / 0.2% Tween™20 / 0.3 M glycine / 20% DMSO.
Reference: HSB-BK
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The Visikol HISTO Buffer Kit comes with all of the buffers required to complete the Visikol HISTO approach: 200 mL of Visikol HISTO Washing Buffer 10X, 100 mL of Visikol HISTO Penetration Buffer, 100 mL of Visikol...
Reference: HSK-BB-100
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The Visikol HISTO Blocking Buffer is used during the Visikol HISTO immunolabeling process. This solution is comprised of PBS/0.2% Tween™20/6% donkey serum/10% DMSO.
Reference: HSK-BB-30
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The Visikol HISTO Blocking Buffer is used during the Visikol HISTO immunolabeling process. This solution is comprised of PBS/0.2% Tween™20/6% donkey serum/10% DMSO.
Reference: HSK-AB-100
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The Visikol HISTO Antibody Buffer is used with immunolabeling in the Visikol HISTO tissue labeling approach. This solution is comprised of PBS/0.2% Tween  20/Heparin/3% donkey serum/5% DMSO.
Reference: HSK-AB-30
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The Visikol HISTO Antibody Buffer is used with immunolabeling in the Visikol HISTO tissue labeling approach. This solution is comprised of PBS/0.2% Tween  20/Heparin/3% donkey serum/5% DMSO.
Reference: HH-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HH-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HH-10
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: AS10 1578
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VEGFR2 | Vascular endothelial growth factor receptor 2. Receptor for VEGF or VEGFC. Has a tyrosine-protein kinase activity. (VEGF) is an important signaling protein involved in both vasculogenesis (the formation of...
Reference: AS10 1571
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Vascular endothelial growth factor receptor 1 are receptors for vascular endothelial growth factor (VEGF). (VEGF) is an important signaling protein involved in both vasculogenesis (the formation of the circulatory...
Reference: AS10 1574
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VEGFR3 | Vascular endothelial growth factor receptor 3 are receptors for vascular endothelial growth factor (VEGF). (VEGF) is an important signaling protein involved in both vasculogenesis (the formation of the...
Reference: AS10 1575
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VEGF | Vascular endothelial growth factor is a growth factor active in angiogenesis, vasculogenesis and endothelial cell growth. It induces endothelial cell proliferation, promotes cell migration, inhibits apoptosis...
Reference: AS15 3091
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VDE (violaxanthin de-epoxidase) is a part of the xanthophyll (or violaxanthin) cycle for controlling the concentration of zeaxanthin in chloroplasts. This enzyme is catalyzing the two-step mono de-epoxidation...
Reference: AS15 2966
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Rabbit anti-V5 is a primary antibody which binds to V5 and is directly conjugated to DyLight® 488. This is of advantage to shorten assay time by no need to use a secondary antibody to V5. DyLight® is a trademark of...
Reference: AS15 2965
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Rabbit anti-V5 is a primary antibody which binds to V5 and is directly conjugated to biotin. This is of advantage to shorten assay time by no need to use a secondary antibody to V5.
Reference: AS15 2964
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Rabbit anti-V5 is a primary antibody which binds to V5 and is directly conjugated to ALP, Alkaline Phosphatase.
Reference: AS15 2968
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Rabbit anti-V5 is a primary antibody which binds to V5 and is directly conjugated to DyLight® 650. DyLight® is a trademark of Thermo Fisher Scientific, Inc. and its subsidiaries.
Reference: AS15 2967
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Rabbit anti-V5 is a primary antibody which binds to V5 and is directly conjugated to DyLight® 550. DyLight® is a trademark of Thermo Fisher Scientific, Inc. and its subsidiaries.
Reference: AS15 3027
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V5-tag is a tag that can be added to a protein of interest as a fusion protein to enable purification and detection.
Reference: AS12 1849
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V-PPase (pyrophosphate-energized vacuolar membrane proton pump 1), EC=3.6.1.1, acts to establish proton gradient of often higher magnitude than H+-ATPase. Is involved in auxin transport and NaCl and drought tolerance....
Reference: AS17 4163
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V-ATPase subunit A is a catalytic subunit of V1 complex of vacuolar ATPase. This enzyme (EC=3.6.3.14) is involved in acidification process of various compartements of eucaryotic cell. This protein is coded by VHA-A...
Reference: AS09 499
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V-ATPase is an enzyme responsible for acidification of intracellular compartments. Subunit H is part of the peripheral V1 complex. Alternative name: vacuolar proton pump subunit H, vacuolar H(+)-ATPase subunit H
Reference: AS09 497
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V-ATPase is an enzyme responsible for acidification of intracellular compartments. Subunit D is the peripheral subunit of V1 complex. Alternative name: Vacuolar proton pump subunit D, vacuolar H(+)-ATPase subunit D
Reference: AS09 468
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V-ATPase c subunit is located in vacuole and is involved in ATP synthesis cuopled proton transport. This protein is coded by ATVHA-C3 gene. Alternative names: AT4g34720/T4L20_300
Reference: AS14 2775
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V-ATPase, subunit B is a non-catalytic subunit of the peripheral V1 complex of vacuolar ATPase. Alternative names: Vacuolar proton pump subunit B1, vacuolar H+-ATPase subunit B, V-ATPase 57 kDa subunit.
Reference: AS20 4369
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V-ATPase subunit VHA-a3 The protein is essential component of the vacuolar proton pump (V-ATPase), a multimeric enzyme that catalyzes the translocation of protons across the membranes and required for assembly and...
Reference: AS14 2822
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V-ATPase subunit VHA-a1 is a subunit of the membrane-integral Vo subunit. VHA-a1 target the V-ATPase enzyme to the trans-golgi network/earl endosome (TGN/EE) in Arabidopsis thaliana. This enzyme is involved in...
Reference: AS17 4160
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V-ATPase subunit A is a catalytic subunit of V1 complex of vacuolar ATPase. This enzyme (EC=3.6.3.14) is involved in acidification process of various compartements of eucaryotic cell. This protein is coded by VHA-A...
Reference: AS17 4159
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V-ATPase subunit A is a catalytic subunit of V1 complex of vacuolar ATPase. This enzyme (EC=3.6.3.14) is involved in acidification process of various compartements of eucaryotic cell. This protein is coded by VHA-A...
Reference: AS09 502
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V-ATPase subunit A is a catalytic subunit of V1 complex of vacuolar ATPase. This enzyme (EC=3.6.3.14) is involved in acidification process of various compartements of eucaryotic cell. This protein is coded by VHA-A...
Reference: AS09 466
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V-ATPase subunit a is coded by VHA-A2 gene. It has hydrogen ion transmembrane transporter activity. Alternative names: At2g21410/F3K23.17, putative vacuolar proton-ATPase subunit, V-ATPase subunit a (100 kDa subunit),...
Reference: AS09 577
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Plant vacuole V-ATPase is responsible for energization of transport of ions and metabolites, and acts as well 'house-keeping' and as a stress response enzyme. V-ATPase is a multi-subunit enzyme composed of a membrane...
Reference: AS07 213
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Plant vacuole V-ATPase is responsible for energization of transport of ions and metabolites, and acts as well 'house-keeping' and as a stress response enzyme. V-ATPase is a multi-subunit enzyme composed of a membrane...

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