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Target Symbol
- AKT1 (31)
- TP53 (24)
- CASP3 (21)
- RELA (20)
- H3-4 (19)
- JUN (19)
- EGFR (17)
- ESR1 (17)
- BAD (16)
- HIF1A (16)
- STAT3 (16)
- YAP1 (16)
- CREB1 (15)
- EIF4EBP1 (15)
- GSK3B (15)
- HISTONE H3 (15)
- MUC1 (15)
- STAT1 (15)
- APP (14)
- BAX (14)
- BCL2 (14)
- HIST2H3A (14)
- HSPB1 (14)
- IRS1 (14)
- CXCR4 (13)
- FOXO1 (13)
- HDAC2 (13)
- MAP1LC3B (13)
- MAPK14 (13)
- TNF (13)
- ATF2 (12)
- BRAF (12)
- BRCA1 (12)
- CASP9 (12)
- CD44 (12)
- GCG (12)
- MMP9 (12)
- NFKBIA (12)
- NOTCH1 (12)
- NR3C1 (12)
- RB1 (12)
- SMAD3 (12)
- STAT5B (12)
- UBB (12)
- XRCC6 (12)
- ERBB2 (11)
- H3C1 (11)
- KEAP1 (11)
- PTEN (11)
- STMN1 (11)
- TGFB1 (11)
- TLR4 (11)
- TRPM8 (11)
- VASP (11)
- AGR2 (10)
- ALK (10)
- ATG5 (10)
- CASP1 (10)
- CDH1 (10)
- HDAC5 (10)
- HSPD1 (10)
- JAK2 (10)
- KDR (10)
- KRT18 (10)
- MAP1LC3A (10)
- MAPK1 (10)
- MKI67 (10)
- NFKB1 (10)
- NOS2 (10)
- NTRK1 (10)
- PAK1 (10)
- PECAM1 (10)
- PIAS3 (10)
- PIK3R1 (10)
- RPS6KA1 (10)
- RPS6KB1 (10)
- SMAD2 (10)
- SOX2 (10)
- STIP1 (10)
- TLR2 (10)
- VEGFA (10)
- VIM (10)
- APC (9)
- BCL2L11 (9)
- CALB1 (9)
- CASP7 (9)
- CCNB1 (9)
- CCNE1 (9)
- CD274 (9)
- CD8A (9)
- CDKN1A (9)
- CDKN2A (9)
- CYCS (9)
- ENO1 (9)
- HSP90AA1 (9)
- HSP90AB1 (9)
- HSPA1A (9)
- ITGB1 (9)
- KRT8 (9)
- LAMP1 (9)
Clonalities
Conjugates
Knockout (KO) Validation
Modifications
- Unmodified (2309)
- Phospho-specific (460)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG1 format, for improved compatibility with existing reagents, assays and techniques. (33)
- This chimeric rabbit antibody was made using the variable domain sequences of the original murine IgG1 format, for improved compatibility with existing reagents, assays and techniques. (11)
- This chimeric rabbit antibody was made using the variable domain sequences of the original murine IgG2a format, for improved compatibility with existing reagents, assays and techniques. (7)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG2a format, for improved compatibility with existing reagents, assays and techniques. (6)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG2b format, for improved compatibility with existing reagents, assays and techniques. (6)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (5)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgM format, for improved compatibility with existing reagents, assays and techniques. (4)
- Acetyl K12 (2)
- Acetyl K5 (2)
- Phospho S127 (2)
- Phospho S39 (2)
- Phospho S727 (2)
- Phospho S795 (2)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG3 format, for improved compatibility with existing reagents, assays and techniques. (2)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Rat IgG2b format, for improved compatibility with existing reagents, assays and techniques. (2)
- This full-length, chimeric rabbit antibody was made using the variable domain sequences of the original Human scFv format, for improved compatibility with existing reagents, assays and techniques. (2)
- TriMethyl K56 (2)
- Acetyl K15 (1)
- Acetyl K18 (1)
- Acetyl K23 (1)
- Acetyl K27 (1)
- Acetyl K56 (1)
- Acetyl K8 (1)
- Acetyl K9 (1)
- Acetyl K9/K14/K18/K23/K27 (1)
- Asymmetric DiMethyl R3 (1)
- DiMethyl K385 (1)
- MonoMethyl K36 (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 (primatized) format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- Pan DiMethyl-lysine (1)
- Phospho S1 (1)
- Phospho S10 (1)
- Phospho S10/T11 (1)
- Phospho S104 (1)
- Phospho S1177 (1)
- Phospho S1248 (1)
- Phospho S15 (1)
- Phospho S157 (1)
- Phospho S182 (1)
- Phospho S240/244 (1)
- Phospho S243 (1)
- Phospho S280 (1)
- Phospho S33 (1)
- Phospho S33/S37/T41 (1)
- Phospho S37 (1)
- Phospho S376 (1)
- Phospho S425 (1)
- Phospho S428 (1)
- Phospho S455 (1)
- Phospho S465/467 + S423/425 (1)
- Phospho S473 (1)
- Phospho S473,Phospho S474,Phospho S472 (1)
- Phospho S5 (1)
- Phospho S51 (1)
- Phospho S529 (1)
- Phospho S612 (1)
- Phospho S62 (1)
- Phospho S73 (1)
- Phospho S80 (1)
- Phospho S82 (1)
- Phospho S89 (1)
- Phospho S957 (1)
- Phospho Ser416 (1)
- Phospho T11 (1)
- Phospho T17 (1)
- Phospho T179 (1)
- Phospho T18/S19 (1)
- Phospho T183/T172 (1)
- Phospho T1989 (1)
- Phospho T202/Y204 + T185/Y187 (1)
- Phospho T24,Phospho T32,Phospho T28 (1)
- Phospho T286 (1)
- Phospho T308 (1)
- Phospho T32 (1)
- Phospho T320 (1)
- Phospho T37/46 (1)
- Phospho T389 (1)
- Phospho T45 (1)
- Phospho T58 (1)
- Phospho T6 (1)
- Phospho T69/71 (1)
- Phospho T69/T71 (1)
- Phospho T70 (1)
- Phospho T91 (1)
- Phospho Y1007/1008 (1)
- Phospho Y1217 (1)
- Phospho Y1349 (1)
- Phospho Y15 (1)
- Phospho Y182 (1)
- Phospho Y207 (1)
- Phospho Y245 (1)
- Phospho Y412 (1)
- Phospho Y694 (1)
- Phospho Y705 (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgM format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG2 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse scFv antibody fragment format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Rat IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Rat IgG2a format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original human scFv format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original murine IgG2b format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original rat IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original rat IgG2b format, for improved compatibility with existing reagents, assays and techniques. (1)
- phospho T1079,Phospho T1041 (1)
Assay Types
Families
- Druggable Genome (7394)
- Transmembrane (3300)
- Transcription Factors (1728)
- Secreted Protein (1166)
- Protein Kinase (829)
- ES Cell Differentiation/IPS (737)
- GPCR (486)
- Stem cell - Pluripotency (483)
- Protease (432)
- Adult stem cells (164)
- Embryonic stem cells (124)
- Nuclear Hormone Receptor (111)
- Phosphatase (111)
- Cancer stem cells (105)
- Induced pluripotent stem cells (90)
- Ion Channels: Other (87)
- Stem cell relevant signaling - JAK/STAT signaling pathway (74)
- Ion Channels: Transient receptor potential (59)
- Ion Channels: Potassium (58)
- P450 (58)
- Stem cell relevant signaling - DSL/Notch pathway (48)
- Stem cell relevant signaling - Wnt Signaling pathway (44)
- Stem cell relevant signaling - TGFb/BMP signaling pathway (43)
- Ion Channels: Cys-loop Receptors (31)
- Ion Channels: Glutamate Receptors (30)
- Ion Channels: Sodium (20)
- Ion Channels: Cyclic nucleotide gated (10)
- Ion Channels: Calcium (8)
- Ion Channels: ATP Receptors (7)
Pathways
- Pathways in cancer (922)
- Metabolic pathways (913)
- MAPK signaling pathway (556)
- Focal adhesion (439)
- Neuroactive ligand-receptor interaction (429)
- Cytokine-cytokine receptor interaction (412)
- Chemokine signaling pathway (392)
- Neurotrophin signaling pathway (360)
- Prostate cancer (336)
- Regulation of actin cytoskeleton (334)
- Cell cycle (303)
- Apoptosis (302)
- Chronic myeloid leukemia (291)
- Colorectal cancer (291)
- Insulin signaling pathway (291)
- Toll-like receptor signaling pathway (291)
- Wnt signaling pathway (286)
- Jak-STAT signaling pathway (281)
- Pancreatic cancer (276)
- Small cell lung cancer (274)
- Calcium signaling pathway (273)
- T cell receptor signaling pathway (271)
- Alzheimer's disease (268)
- ErbB signaling pathway (265)
- Endocytosis (251)
- Huntington's disease (250)
- Leukocyte transendothelial migration (238)
- Acute myeloid leukemia (223)
- Adipocytokine signaling pathway (223)
- Progesterone-mediated oocyte maturation (223)
- Melanoma (211)
- Endometrial cancer (200)
- p53 signaling pathway (200)
- B cell receptor signaling pathway (195)
- Glioma (195)
- Melanogenesis (194)
- Natural killer cell mediated cytotoxicity (194)
- Fc gamma R-mediated phagocytosis (191)
- Non-small cell lung cancer (191)
- Renal cell carcinoma (191)
- Tight junction (191)
- Oocyte meiosis (187)
- Ubiquitin mediated proteolysis (183)
- Axon guidance (181)
- VEGF signaling pathway (176)
- Amyotrophic lateral sclerosis (ALS) (174)
- GnRH signaling pathway (174)
- Parkinson's disease (171)
- Vascular smooth muscle contraction (170)
- mTOR signaling pathway (165)
- NOD-like receptor signaling pathway (164)
- Gap junction (162)
- Adherens junction (161)
- Cell adhesion molecules (CAMs) (157)
- TGF-beta signaling pathway (156)
- RIG-I-like receptor signaling pathway (155)
- Bladder cancer (149)
- Fc epsilon RI signaling pathway (149)
- Epithelial cell signaling in Helicobacter pylori infection (145)
- Long-term potentiation (132)
- Basal cell carcinoma (131)
- Pathogenic Escherichia coli infection (127)
- Purine metabolism (125)
- Hematopoietic cell lineage (121)
- Dilated cardiomyopathy (118)
- Type II diabetes mellitus (114)
- Long-term depression (113)
- PPAR signaling pathway (113)
- ECM-receptor interaction (110)
- Hypertrophic cardiomyopathy (HCM) (107)
- Systemic lupus erythematosus (107)
- Cytosolic DNA-sensing pathway (105)
- Glycolysis / Gluconeogenesis (105)
- Hedgehog signaling pathway (101)
- Antigen processing and presentation (100)
- Complement and coagulation cascades (99)
- Viral myocarditis (98)
- Arrhythmogenic right ventricular cardiomyopathy (ARVC) (97)
- Lysosome (96)
- Notch signaling pathway (86)
- Oxidative phosphorylation (80)
- Prion diseases (80)
- Thyroid cancer (80)
- Spliceosome (78)
- Metabolism of xenobiotics by cytochrome P450 (77)
- Drug metabolism - cytochrome P450 (73)
- Arginine and proline metabolism (71)
- Phosphatidylinositol signaling system (65)
- Type I diabetes mellitus (64)
- Regulation of autophagy (61)
- Cardiac muscle contraction (59)
- Fatty acid metabolism (58)
- Vibrio cholerae infection (58)
- Alanine (57)
- Pyrimidine metabolism (57)
- aspartate and glutamate metabolism (57)
- Tyrosine metabolism (56)
- Arachidonic acid metabolism (55)
- Pyruvate metabolism (55)
- Valine (55)
- RNA degradation (51)
- Dorso-ventral axis formation (50)
- Retinol metabolism (50)
- leucine and isoleucine degradation (50)
- Primary immunodeficiency (48)
- Ribosome (48)
- Base excision repair (47)
- Tryptophan metabolism (47)
- Citrate cycle (TCA cycle) (46)
- Nucleotide excision repair (46)
- Graft-versus-host disease (45)
- ABC transporters (44)
- Fructose and mannose metabolism (44)
- Glutathione metabolism (44)
- Inositol phosphate metabolism (44)
- Starch and sucrose metabolism (44)
- DNA replication (43)
- Allograft rejection (42)
- Autoimmune thyroid disease (42)
- Butanoate metabolism (42)
- Glycerolipid metabolism (42)
- Proteasome (41)
- Cysteine and methionine metabolism (39)
- Maturity onset diabetes of the young (39)
- Taste transduction (39)
- Histidine metabolism (36)
- Homologous recombination (36)
- Lysine degradation (36)
- Sphingolipid metabolism (35)
- Glycerophospholipid metabolism (34)
- Androgen and estrogen metabolism (33)
- Galactose metabolism (33)
- Olfactory transduction (33)
- Basal transcription factors (32)
- Renin-angiotensin system (32)
- Mismatch repair (31)
- Drug metabolism - other enzymes (30)
- Propanoate metabolism (30)
- Amino sugar and nucleotide sugar metabolism (29)
- Phenylalanine metabolism (27)
- Porphyrin and chlorophyll metabolism (27)
- SNARE interactions in vesicular transport (27)
- Glycine (26)
- Nitrogen metabolism (26)
- Non-homologous end-joining (26)
- Pentose phosphate pathway (26)
- serine and threonine metabolism (26)
- Nicotinate and nicotinamide metabolism (25)
- Biosynthesis of unsaturated fatty acids (24)
- Primary bile acid biosynthesis (23)
- beta-Alanine metabolism (23)
- Linoleic acid metabolism (22)
- N-Glycan biosynthesis (21)
- Asthma (20)
- Ether lipid metabolism (19)
- Aminoacyl-tRNA biosynthesis (18)
- C21-Steroid hormone metabolism (18)
- Riboflavin metabolism (18)
- Terpenoid backbone biosynthesis (18)
- Folate biosynthesis (17)
- Pentose and glucuronate interconversions (16)
- Glycosaminoglycan degradation (15)
- Limonene and pinene degradation (15)
- Glyoxylate and dicarboxylate metabolism (14)
- O-Glycan biosynthesis (14)
- Taurine and hypotaurine metabolism (14)
- Ascorbate and aldarate metabolism (13)
- Other glycan degradation (12)
- Pantothenate and CoA biosynthesis (12)
- Selenoamino acid metabolism (12)
- Methane metabolism (11)
- One carbon pool by folate (11)
- Chondroitin sulfate biosynthesis (10)
- Circadian rhythm - mammal (10)
- Synthesis and degradation of ketone bodies (10)
- alpha-Linolenic acid metabolism (9)
- D-Glutamine and D-glutamate metabolism (8)
- Glycosphingolipid biosynthesis - ganglio series (8)
- Glycosphingolipid biosynthesis - lacto and neolacto series (8)
- Steroid biosynthesis (8)
- leucine and isoleucine biosynthesis (8)
- Fatty acid biosynthesis (7)
- Heparan sulfate biosynthesis (7)
- Caffeine metabolism (6)
- Cyanoamino acid metabolism (6)
- Glycosphingolipid biosynthesis - globo series (6)
- Glycosylphosphatidylinositol(GPI)-anchor biosynthesis (6)
- Keratan sulfate biosynthesis (6)
- Phenylalanine (6)
- Sulfur metabolism (6)
- tyrosine and tryptophan biosynthesis (6)
- Fatty acid elongation in mitochondria (5)
- RNA polymerase (5)
- Vitamin B6 metabolism (5)
- Protein export (4)
- Thiamine metabolism (4)
- Lysine biosynthesis (3)
- O-Mannosyl glycan biosynthesis (1)
- Ubiquinone and other terpenoid-quinone biosynthesis (1)