AGT antibody (N-Term)
Quick Overview for AGT antibody (N-Term) (ABIN375343)
Target
See all AGT AntibodiesReactivity
Host
Clonality
Conjugate
Application
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Binding Specificity
- N-Term
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Specificity
- Reacts with human 53 kDa AGT protein
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Cross-Reactivity
- Rat (Rattus), Mouse (Murine)
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Cross-Reactivity (Details)
- Cross reacts with the proteins from mouse, rat and other species due to sequence homology.
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Purification
- Antiserum
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Immunogen
- Synthetic peptide derived from Nter domain of human Serpin A8 protein
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Isotype
- IgG
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Application Notes
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Working dilution: Optimal dilution should be determined by the end user The following are guidelines only :
- IHC : 1/50 to 1/500 - WB : 1/200 to 1/2 000 -
Restrictions
- For Research Use only
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Format
- Lyophilized
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Reconstitution
- Must be reconstituted in distilled water.
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Storage
- 4 °C/-20 °C
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Storage Comment
- Lyophilized powder stable for a minimum of 2 years at -20°C. Store reconstituted antibodies at +4°C. For extended periods store in aliquots at -20°C. Antibodies are guaranteed for 6 month from date of receipt.
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Expiry Date
- 24 months
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- AGT (Angiotensinogen (serpin Peptidase Inhibitor, Clade A, Member 8) (AGT))
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Alternative Name
- Angiotensinogen (AGT)
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Background
- Essential component of the renin-angiotensin system (RAS), a potent regulator of blood pressure, body fluid and electrolyte homeostasis. In response to lowered blood pressure, the enzyme renin cleaves angiotensinogen to produce angiotensin-1 (angiotensin 1-10). Angiotensin-1 is a substrate of ACE (angiotensin converting enzyme) that removes a dipeptide to yield the physiologically active peptide angiotensin-2 (angiotensin 1-8). Angiotensin-1 and angiotensin-2 can be further processed to generate angiotensin-3 (angiotensin 2-8), angiotensin-4 (angiotensin 3-8). Angiotensin 1-7 is cleaved from angiotensin-2 by ACE2 or from angiotensin-1 by MME (neprilysin). Angiotensin 1-9 is cleaved from angiotensin-1 by ACE2.
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UniProt
- P01019
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Pathways
- JAK-STAT Signaling, ACE Inhibitor Pathway, EGFR Signaling Pathway, Peptide Hormone Metabolism, Regulation of Systemic Arterial Blood Pressure by Hormones, Regulation of Lipid Metabolism by PPARalpha, Protein targeting to Nucleus, Feeding Behaviour, Monocarboxylic Acid Catabolic Process, Dicarboxylic Acid Transport, Positive Regulation of Response to DNA Damage Stimulus, Regulation of long-term Neuronal Synaptic Plasticity
Target
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