- Category
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- Chloroplast 689
- Mitochondria 304
- Cytoplasm 531
- Plasma Membrane 368
- Golgi 121
- Endoplasmic Reticulum 111
- Plastidial 175
- Peroxisomal 47
- Nucleus 1028
- Vacuole 136
- Cell Wall 12
- Extracellular 102
Arabidopsis Antibodies
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Starting at $89.00
Immunogen: AT2G45660 O64645 Synonyms: SOC1, AGAMOUS-LIKE 20, AGL20, ATSOC1, SUPPRESSOR OF OVEREXPRESSION OF CO 1 Background:
SOC1, a MADS-box type II transcription factor, integrates environmental and endogenous cues to promote flowering in angiosperms. SOC1 acts downstream of FT. It acts with AGL24 to promote flowering and inflorescence meristem identity. -
Starting at $89.00
Immunogen: AT3G57650 Q8LG50 Synonyms: LPAT2, LYSOPHOSPHATIDYL ACYLTRANSFERASE 2. Background:
Lysophosphatidyl acyltransferase (LPAT) is a pivotal enzyme controlling the metabolic flow of lysophosphatidic acid into different phosphatidic acids in diverse tissues. LPAT2 is an endoplasmic reticulum localized protein with lysophosphatidyl acyltransferase activity. -
Starting at $89.00
Immunogen: AT1G64780 Q9ZPJ8 Synonyms: AMT1-2, AMT1;2, AMMONIUM TRANSPORTER 1;2, ATAMT1;2 Background:
AMT1-2 is an ammonium transporter protein believed to act as a high affinity transporter. It is expressed in the root, primarily in endodermal and cortical cells, and contributes to ammonium uptake in the root. -
Starting at $89.00
Immunogen: AT2G27600 Q9ZNT0 Synonyms: SKD1, ATSKD1, SUPPRESSOR OF K+ TRANSPORT GROWTH DEFECT1, VACUOLAR PROTEIN SORTING 4, VPS4 Background:
SKD1 (Suppressor of K+ Transport Growth Defect 1) is a homolog of Vps4p/SKD1 which localized to the cytoplasm and to multivesicular endosomes. It is involved in the transport of biosynthetic membrane proteins from the prevacuolar/endosomal compartment to the vacuole. -
Starting at $89.00
Immunogen: AT4G25370 Q93WL3 Synonyms: ClpS1, CLPT1. Background:
Most Clp proteins in Arabidopsis are located in the chloroplast stroma (ClpB3 (AT5G15450), ClpC1-2, ClpD (AT5G51070), ClpP1 (ATCG00670), ClpP3-6, ClpR1-4, ClpS1-2, and ClpT) and all are nucleus-encoded, except for the plastomic ClpP1. CLPT1 first binds to the heptameric P-ring containing the CLP3-6 subunits followed by CLPT2 (AT4G12060), and only then does the P-ring combine with the R-ring composed of the clpP1 and CLPR1-4 subunits -
Starting at $89.00
Immunogen: AT1G68765 Q8LAD7 Synonyms: IDA, INFLORESCENCE DEFICIENT IN ABSCISSION. Background:
IDA is a small protein of 77 amino acids. Loss of function mutations are defective in the process of ethylene independent floral organ abscission. Although the mutants have a normal appearing abscission zone, the floral organs do not abscisce. The peptide appears to be secreted and may function as a ligand. Arabidopsis 35S:IDA lines constitutively overexpressing IDA exhibit earlier abscission of floral organs, showing that the abscission zones are responsive to IDA soon after the opening of the flowers. -
Starting at $89.00
Immunogen: AT2G44170 Q94L32 Synonyms: NMT2, At NMT2, ARABIDOPSIS N-MYRISTOYLTRANSFERASE 2, N-MYRISTOYLTRANSFERASE 2. Background:
Arabidopsis thaliana, like human, has two tightly regulated N-myristoyltransferase (NMT) genes, NMT1 (AT5G57020) and NMT2 (AT2G44170). NMT2 is involved in pathways controlling the transition between the vegetative and floral stages and possibly in floral meristem differentiation. -
Starting at $89.00
Immunogen: AT1G60430 Q1ECJ7 Synonyms: ARPC3, ACTIN-RELATED PROTEIN C3 Background:
Actin-related protein C3 (ARPC3) is a member of ARP2/3 complex, it is involved in regulation of actin polymerization and together with an activating nucleation-promoting factor (NPF) mediates the formation of branched actin networks. Arp2/3 complex plays a critical role in the control of cell morphogenesis via the modulation of cell polarity development. -
Starting at $89.00
Immunogen: AT2G26300 P18064 Synonyms: GPA1, Gα, ARABIDOPSIS THALIANA G PROTEIN ALPHA SUBUNIT 1, ATGPA1, G PROTEIN ALPHA SUBUNIT 1, GP ALPHA 1 Background:
GPA1 protein is an alpha subunit of a heterotrimeric GTP-binding protein. The α and β subunits of the Arabidopsis heterotrimeric G protein act both synergistically and separately in activating different intracellular ROS-generating systems.