(Des-Asp1)-Angiotensin I
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(Des-Asp1)-Angiotensin I

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Category
Others
Catalog number
BAT-015772
CAS number
56317-01-2
Molecular Formula
C58H84N16O11
Molecular Weight
1181.39
(Des-Asp1)-Angiotensin I
IUPAC Name
(2S)-2-[[(2S)-2-[[(2S)-2-[[(2S)-1-[(2S)-2-[[(2S,3S)-2-[[(2S)-2-[[(2S)-2-[[(2S)-2-amino-5-(diaminomethylideneamino)pentanoyl]amino]-3-methylbutanoyl]amino]-3-(4-hydroxyphenyl)propanoyl]amino]-3-methylpentanoyl]amino]-3-(1H-imidazol-5-yl)propanoyl]pyrrolidine-2-carbonyl]amino]-3-phenylpropanoyl]amino]-3-(1H-imidazol-5-yl)propanoyl]amino]-4-methylpentanoic acid
Synonyms
Angiotensin I [Des-Asp1-](human); H-Arg-Val-Tyr-Ile-His-Pro-Phe-His-Leu-OH
Sequence
RVYIHPFHL
InChI
InChI=1S/C58H84N16O11/c1-7-34(6)48(73-52(79)42(25-36-17-19-39(75)20-18-36)69-54(81)47(33(4)5)72-49(76)40(59)15-11-21-64-58(60)61)55(82)70-44(27-38-29-63-31-66-38)56(83)74-22-12-16-46(74)53(80)68-41(24-35-13-9-8-10-14-35)50(77)67-43(26-37-28-62-30-65-37)51(78)71-45(57(84)85)23-32(2)3/h8-10,13-14,17-20,28-34,40-48,75H,7,11-12,15-16,21-27,59H2,1-6H3,(H,62,65)(H,63,66)(H,67,77)(H,68,80)(H,69,81)(H,70,82)(H,71,78)(H,72,76)(H,73,79)(H,84,85)(H4,60,61,64)/t34-,40-,41-,42-,43-,44-,45-,46-,47-,48-/m0/s1
InChI Key
SKWIUWNFCDCCDM-XZJAPRPDSA-N
Canonical SMILES
CCC(C)C(C(=O)NC(CC1=CN=CN1)C(=O)N2CCCC2C(=O)NC(CC3=CC=CC=C3)C(=O)NC(CC4=CN=CN4)C(=O)NC(CC(C)C)C(=O)O)NC(=O)C(CC5=CC=C(C=C5)O)NC(=O)C(C(C)C)NC(=O)C(CCCN=C(N)N)N
1. Formation of angiotensin III from [des-Asp1]angiotensin I in the mesentric vasculature
J M Sexton, S L Britton, W H Beierwaltes, M J Fiksen-Olsen, J C Romero Am J Physiol. 1979 Aug;237(2):H218-23. doi: 10.1152/ajpheart.1979.237.2.H218.
The effects of [des-Asp1]angiotensin I and angiotensin III on mesenteric blood flow were compared in 15 pentobarbital-anesthetized dogs. These agonists were administered as bolus injections directly into the vasculature supplied by the superior mesenteric artery. Both [des-Asp1]angiotensin I and angiotensin III produced dose-dependent decreases in mesenteric blood flow, with angiotensin III being more potent than [des-Asp1]angiotensin I at all doses tested. The constrictor responses to [des-Asp1]angiotensin I were markedly attenuated in the presence of an angiotensin-converting enzyme inhibitor (SQ20881); SQ20881 did not alter responses to angiotensin III or norepinephrine. The administration of [Ile7]angiotensin III (an angiotensin III antagonist) attenuated the responses to both [des-Asp1]angiotensin I and angiotensin III, without altering the responses to norepinephrine. These results suggest that the decrease in mesenteric blood flow produced by [des-Asp1]angiotensin I is largely caused by its local enzymatic conversion to angiotensin III. This conversion in one transit through the mesenteric vasculature is approximately 24%.
2. (Des-Asp1) angiotensin I: a study of its pressor and steroidogenic activities in conscious rats
W B Campbell, J M Schmitz, H D Itskovitz Endocrinology. 1977 Jan;100(1):46-51. doi: 10.1210/endo-100-1-46.
The steroidogenic and pressor activities of the nonapeptide (des-Asp1) angiotensin I [(des-Asp)-AI] were tested in conscious rats. (des-Asp)-AI caused dose related increases in mean arterial pressure (MAP), serum aldosterone, and serum corticosterone in doses between 3 and 3,000 ng/kg/min. (des-Asp)-AI was 14% as potent as angiotensin I and angiotensin II and 60% as potent as (des-Asp1) angiotensin II [des-Asp)-AII] in raising MAP. (des-Asp)-AI was less active than AI, AII, or (des-Asp)-AII in causing increased release of aldosterone, possessing only 8%, 11%, and 17% of the potency of AII, (des-Asp)-AII, and AI, respectively. Each of these angiotensin peptides was equally potent in elevating serum corticosterone levels. Infusions of a nonapeptide inhibitor of converting enzyme (CEI, 0.5 mg/kg/min iv) did not alter control MAP or blood pressure responses to AII or (des-Asp-)-AII but inhibited equally the blood pressure effects of AI and (des-Asp)-AI. CEI also inhibited the ability of (des-Asp)-AI (67% inhibition) and AI (34% inhibition) to increase the serum aldosterone concentration, but had no effect on basal aldosterone levels. These data indicate that (des-Asp)-AI has pressor and steroidogenic effects, but requires conversion to (des-Asp)-AII for a major portion of its activity. These results further substantiate the hypothesis that (des-Asp)-AII, recently recognized as a hormone of the renin-angiotensin system, may be produced without the formation of AII as an intermediate and provide in vivo evidence for the conversion of (des-Asp)-AI to (des-Asp)-AII.
3. Des-Asp1-angiotensin I: a metabolite of angiotensin I in the perfused feline adrenal
J A Ackerly, T S Felger, M J Peach Eur J Pharmacol. 1976 Jul;38(1):113-21. doi: 10.1016/0014-2999(76)90207-7.
The administration of radioactive angiotensin I to the retrogradely perfused feline adrenal gland caused a brisk discharge of catecholamines. Recovery of the labelled decapeptide and metabolites in the adrenal effluent fluid was complete in 5 min. Radioimmunoassay of this perfusate revealed that most of the peptide remained as angiotensin I, but chromatographic and electrophoretic evaluation indicated that greater than 68% of the peptide had been metabolized to des-asp1 -angiotensin I. The absence of des-asp1 -angiotensin II, angiotensin II or his-3H-leu in adrenal effluent fluid suggested minimal dipeptidyl carboxypeptidase activity in this preparation. In addition, the profile of angiotensin I metabolites from the perfused adrenal was not altered by treatment with a converting enzyme inhibitor B. jararaca nonapeptide. The des-asp1-angiotensin I peptide was a very weak secretagogue in the adrenal medulla. If metabolism of the decapeptide to the nonapeptide occurs in the medulla, this may represent a pathway to limit the secretory action of angiotensin I. These results suggest a high degree of adrenal aminopeptidase activity which may be primarily localized in the adrenal cortex.
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