Polyclonal Antibody to Angiotensin I Converting Enzyme (ACE)
Angiotensin I Converting Enzyme
- 产品详情
- 实验流程
Application
| WB |
|---|---|
| Primary Accession | F1RRW5 |
| Reactivity | Pig |
| Host | Rabbit |
| Clonality | Polyclonal |
| Calculated MW | 150312 Da |
| Other Names | CD143; ACE1; DCP1; ACEI; ACE-I; Kininase II; Angiotensin-Converting Enzyme; Peptidyl-Dipeptidase A; Dipeptidyl Carboxypeptidase 1; Angiotensin-converting enzyme, soluble form |
|---|---|
| Target/Specificity | Sus scrofa; Porcine (Pig) |
| Dilution | WB~~Western blotting: 0.2-2 µg/mL;1:250-2500
Immunohistochemistry: 5-20 µg/mL;1:25-100 Immunocytochemistry: 5-20 µg/mL;1:25-100 Optimal working dilutions must be determined by end user. |
| Format | PBS, pH7.4, containing 0.02% NaN3, 50% glycerol. |
| Storage | Store at -20 °C.Stable for 12 months from date of receipt |
For Research Use Only. Not For Use In Diagnostic Procedures.
| Name | ACE {ECO:0000250|UniProtKB:P12821} |
|---|---|
| Function | Dipeptidyl carboxypeptidase that removes dipeptides from the C-terminus of a variety of circulating hormones, such as angiotensin I, bradykinin or enkephalins, thereby playing a key role in the regulation of blood pressure, electrolyte homeostasis or synaptic plasticity (By similarity). Composed of two similar catalytic domains, each possessing a functional active site, with different selectivity for substrates (By similarity). Plays a major role in the angiotensin-renin system that regulates blood pressure and sodium retention by the kidney by converting angiotensin I to angiotensin II, resulting in an increase of the vasoconstrictor activity of angiotensin (By similarity). Also able to inactivate bradykinin, a potent vasodilator, and therefore enhance the blood pressure response (PubMed:4962200). Acts as a regulator of synaptic transmission by mediating cleavage of neuropeptide hormones, such as substance P, neurotensin or enkephalins (By similarity). Catalyzes degradation of different enkephalin neuropeptides (Met- enkephalin, Leu-enkephalin, Met-enkephalin-Arg-Phe and possibly Met- enkephalin-Arg-Gly-Leu) (By similarity). Acts as a regulator of synaptic plasticity in the nucleus accumbens of the brain by mediating cleavage of Met-enkephalin-Arg-Phe, a strong ligand of Mu-type opioid receptor OPRM1, into Met-enkephalin (By similarity). Met-enkephalin- Arg-Phe cleavage by ACE decreases activation of OPRM1, leading to long- term synaptic potentiation of glutamate release (By similarity). Also acts as a regulator of hematopoietic stem cell differentiation by mediating degradation of hemoregulatory peptide N-acetyl-SDKP (AcSDKP) (By similarity). Acts as a regulator of cannabinoid signaling pathway by mediating degradation of hemopressin, an antagonist peptide of the cannabinoid receptor CNR1 (By similarity). Involved in amyloid-beta metabolism by catalyzing degradation of Amyloid-beta protein 40 and Amyloid-beta protein 42 peptides, thereby preventing plaque formation (By similarity). Catalyzes cleavage of cholecystokinin (maturation of Cholecystokinin-8 and Cholecystokinin-5) and Gonadoliberin-1 (both maturation and degradation) hormones (By similarity). Degradation of hemoregulatory peptide N-acetyl-SDKP (AcSDKP) and amyloid-beta proteins is mediated by the N-terminal catalytic domain, while angiotensin I and cholecystokinin cleavage is mediated by the C-terminal catalytic region (By similarity). |
| Cellular Location | Cell membrane {ECO:0000250|UniProtKB:P12821}; Single-pass type I membrane protein. Cytoplasm {ECO:0000250|UniProtKB:P09470}. Note=Detected in both cell membrane and cytoplasm in neurons. {ECO:0000250|UniProtKB:P09470} |
Research Areas
Application Protocols
Provided below are standard protocols that you may find useful for product applications.
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