Golgi
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Starting at $89.00
Immunogen: AT3G58730 Q9XGM1 Synonyms: VHA-D ,V-ATPase, D Background:
The vacuolar-type H(+)-ATPase acidifies intracellular compartments and is essential for many processes, including cotransport, guard cell movement, development, and tolerance to environmental stress. There are at least 26 subunits of the vacuolar-type H(+)-ATPase in the Arabidopsis thaliana. The pump consists of subunits A through H of the peripheral V(1) complex, and subunits a, c, c" and d of the V(o) membrane sector. -
Starting at $89.00
Immunogen: AT2G38120 Q96247 Synonyms: AUX1, ATAUX1, AUXIN RESISTANT 1, MAP1, MODIFIER OF ARF7/NPH4 PHENOTYPES 1, PIR1, WAV5, WAVY ROOTS 5 Background:
AUX1 is an auxin influx transporter. AUX1 resides at the apical plasma membrane of protophloem cells and at highly dynamic subpopulations of Golgi apparatus and endosomes in all cell types. AUX1 action in the lateral root cap and/or epidermal cells influences lateral root initiation and positioning. Shoot supplied ammonium targets AUX1 and inhibits lateral root emergence. -
Starting at $89.00
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Starting at $89.00
Immunogen: AT2G38940 Q96303 Synonyms: PHT1;4, ARABIDOPSIS THALIANA PHOSPHATE TRANSPORTER 2, ATPT2, PHOSPHATE TRANSPORTER 1;4 Background:
PHT1;4 is a member of the Pht1 family of phosphate transporters which include: Pht1;1 (AT5G43350), Pht1;2 (AT5G43370), Pht1;3 (AT5G43360), Pht1;4 (AT2G38940), Pht1;5 (AT2G32830), Pht1;6 (AT5G43340), Pht1;7 (AT3G54700), Pht1;8 (AT1G20860), Pht1;9 (AT1G76430). -
Starting at $89.00
Immunogen: AT3G42050 Q9LX65 Synonyms: VHA-H Background:
V-ATPases are multisubunit membrane protein complexes that use the energy provided by ATP hydrolysis to generate a proton gradient across various intracellular and plasma membranes. Subunit H activates the ATPase activity of the enzyme and couples ATPase activity to proton flow. -
Starting at $89.00
Immunogen: AT3G12580 Q9LHA8 Synonyms: ARABIDOPSIS HEAT SHOCK PROTEIN 70, ATHSP70, HEAT SHOCK 70 KDA PROTEIN 4, HEAT SHOCK PROTEIN 70, HSC70-4, HSP70, HSP70-4 Background:
Hsp70s function as molecular chaperones and are encoded by a multi-gene family whose members play a crucial role in plant response to stress conditions, and in plant growth and development.