Glutamic-Oxaloacetic Transaminase 2, Mitochondrial (Aspartate Aminotransferase 2) (GOT2) Peptide
Quick Overview for Glutamic-Oxaloacetic Transaminase 2, Mitochondrial (Aspartate Aminotransferase 2) (GOT2) Peptide (ABIN936661)
Target
Origin
Source
Application
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                                            Peptide Type
- Synthetic
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                                            Sequence
- AILNTPDLRK QWLQEVKVMA DRIIGMRTQL VSNLKKEGST HNWQHITDQI
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                                            Characteristics
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                        A synthetic peptide for use as a blocking control in assays to test for specificity of GOT2 antibody,
 Alternative Names: GOT2 control peptide, GOT2 antibody Blocking Peptide, Anti-GOT2 Blocking Peptide, Glutamic-Oxaloacetic Transaminase 2 Mitochondrial Blocking Peptide, Aspartate Aminotransferase 2 Blocking Peptide, FLJ40994 Blocking Peptide, kat4 Blocking Peptide, kativ Blocking Peptide, mitaat Blocking Peptide
 
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                                            Application Notes
- Optimal conditions should be determined by the investigator
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                                            Restrictions
- For Research Use only
 
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                                            Format
- Lyophilized
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                                            Reconstitution
- Add 100 µL of distilled water for a final peptide concentration is 1 mg/mL.
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                                            Buffer
- PBS
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                                            Handling Advice
- Avoid repeated freeze/thaw cycles.
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                                            Storage
- -20 °C
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                                            Storage Comment
- Store at -20 °C long term.
 
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    - GOT2 (Glutamic-Oxaloacetic Transaminase 2, Mitochondrial (Aspartate Aminotransferase 2) (GOT2))
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                                            Background
- Glutamic-oxaloacetic transaminase is a pyridoxal phosphate-dependent enzyme which exists in cytoplasmic and inner-membrane mitochondrial forms, GOT1 and GOT2, respectively. GOT plays a role in amino acid metabolism and the urea and tricarboxylic acid cycles. The two enzymes are homodimeric and show close homology.
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                                            Molecular Weight
- 45 kDa
 Target
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