- Category
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- Chloroplast 708
- Mitochondria 324
- Cytoplasm 559
- Plasma Membrane 416
- Golgi 124
- Endoplasmic Reticulum 117
- Plastidial 189
- Peroxisomal 51
- Nucleus 1103
- Vacuole 140
- Cell Wall 30
- Extracellular 110
Arabidopsis Antibodies
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Starting at $89.00
Immunogen: AT2G29990 O80874 
Synonyms: NDA2, ALTERNATIVE NAD(P)H DEHYDROGENASE 2 Background:
In mitochondria, type II NAD(P)H dehydrogenase may have a role in redox stabilization and regulation as energy bypass proteins together with AOX proteins (AOX1A, AT3G22370; AOX1B,AT3G22360; AOX1C, AT3G27620; AOX1D, AT1G32350; AOX2, AT5G64210). Arabidopsis thaliana NDA1 (AT1G07180) and NDA2 (AT2G32950) are paralogs displaying 82% amino acid sequence identity. -
Starting at $89.00
Immunogen: AT5G58440 Q8L5Z7 
Synonyms: SNX2a Background:
The Arabidopsis sorting nexins SNX1 (AT5G06140), SNX2a (AT5G58440) and SNX2b (AT5G07120) possess a PX domain and two coiled-coil regions constituting BAR domains at the C-terminus. Inhibition of retromer function in vivo by expression of SNX1 or SNX2a mutants as well as transient RNAi knockdown of all sorting nexins led to accumulation of the VSR BP80 at the TGN. -
Starting at $89.00
Immunogen: AT1G72050 Q84MZ4 
Synonyms: TFIIIA, TRANSCRIPTION FACTOR IIIA Background:
Transcription factor IIIA (TFIIIA) is specifically required for 5S ribosomal RNA which is an essential component of the large ribosomal subunit. High expression of the TFIIIA gene together with low proteolytic cleavage contributes to accumulation of functional, full-length TFIIIA protein, and results in 5S rRNA accumulation in the seed. -
Starting at $89.00
Immunogen: AT1G07180 Q8GWA1 
Synonyms: NDA1, ALTERNATIVE NAD(P)H DEHYDROGENASE 1, ARABIDOPSIS THALIANA INTERNAL NON-PHOSPHORYLATING NAD ( P ) H DEHYDROGENASE, ATNDI1 Background:
In mitochondria, type II NAD(P)H dehydrogenase may have a role in redox stabilization and regulation as energy bypass proteins together with AOX proteins (AOX1A, AT3G22370; AOX1B,AT3G22360; AOX1C, AT3G27620; AOX1D, AT1G32350; AOX2, AT5G64210). Arabidopsis thaliana NDA1 (AT1G07180) and NDA2 (AT2G32950) are paralogs displaying 82% amino acid sequence identity. -
Starting at $89.00
Immunogen: AT4G29040 Q9SZD4 
Synonyms: RPT2A, 26S proteasome AAA-ATPase subunit RPT2a, 26S proteasome subunit 4 homolog A Background:
RPT2A interacts with transit peptides of proteins targeted to the chloroplast, and may be involved in the degradation of unimported plastid protein precursors. It is required for the maintenance of postembryonic root and shoot meristems. And it acts redundantly with RPT2B in the regulation of gametogenesis. -
Starting at $89.00
Immunogen: AT5G27630 Q8RWD9 
Synonyms: ACBP5, ACYL-COA BINDING PROTEIN 5, ATACBP5. Background:
Arabidopsis acyl-CoA-binding proteins ACBP4 (AT3G05420)and ACBP5 (AT5G27630) are subcellularly localized to the cytosol and ACBP4 depletion affects membrane lipid composition. ACBP4 is expressed in all plant organs. It is involved in fatty acid transport. -
Starting at $89.00
Immunogen: AT3G05420 Q9MA55 
Synonyms: ACBP4, ACYL-COA BINDING PROTEIN 4, ATACBP4. Background:
Arabidopsis acyl-CoA-binding proteins ACBP4 (AT3G05420)and ACBP5 (AT5G27630) are subcellularly localized to the cytosol and ACBP4 depletion affects membrane lipid composition. ACBP4 is expressed in all plant organs. It is involved in fatty acid transport. It plays a role in the biosynthesis of membrane lipids including galactolipids and phospholipids. -
Starting at $89.00
Immunogen: AT2G19450 Q9SLD2 
Synonyms: DGAT1, ABX45, AS11, ATDGAT, ATDGAT1, RDS1, TAG1, ACYL-COA:DIACYLGLYCEROL ACYLTRANSFERASE 1, ARABIDOPSIS THALIANA ACYL-COA:DIACYLGLYCEROL ACYLTRANSFERASE, TRIACYLGLYCEROL BIOSYNTHESIS DEFECT 1. Background:
DGAT1/TAG1 is a membrane-bound diacylglycerol acyltransferase. It catalyzes the final, rate-limiting step in triacylglycerol (oil) biosynthesis, playing a major role in seed oil accumulation and leaf senescence. Its preferred substrate is linolenoyl-CoA (C18:3-CoA). -
Starting at $89.00
Immunogen: AT4G22920 O82741 
Synonyms: NYE1,ATNYE1, NON-YELLOWING 1, SGR, SGR1, STAY-GREEN, STAY-GREEN 1 Background:
NYE1/SGR1 is a chloroplast‑localized protein that acts as a key positive regulator of chlorophyll catabolism during leaf senescence. It functions antagonistically with SGR2 to balance the breakdown of chlorophyll with the remobilization of other cellular components.