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激肽释放酶和内肽酶24.11在大鼠心房利钠肽代谢途径中的各自作用。

Respective roles of kallikrein and endopeptidase 24.11 in the metabolic pathway of atrial natriuretic peptide in the rat.

作者信息

Vanneste Y, Pauwels S, Lambotte L, Michel A, Dimaline R, Deschodt-Lanckman M

机构信息

Laboratoire Pluridisciplinaire de Recherche Expérimentale Biomédicale, Faculté de Médecine, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

Biochem J. 1990 Aug 1;269(3):801-6. doi: 10.1042/bj2690801.

Abstract

The metabolism of atrial natriuretic peptide (ANP) and Cys-105-Phe-106-cleaved ANP (ANP) was studied during constant infusion of 125I-labelled peptides in rats. Analysis of circulating radioactivity indicated rapid clearance of ANP and ANP', with mean half-lives of 0.42 and 1.04 min respectively. H.p.l.c. fractionation of plasma taken during the infusion of labelled ANP revealed the presence of three radioactive fragments, the major one co-eluting with 125I-ANP'. These fragments correspond to cleavage products previously found to be generated in vitro by the action of endopeptidase 24.11 (E-24.11). On evaluating the effects of peptidase inhibitors, a significant increase in the half-life of ANP was observed with phosphoramidon (t1/2 7.8 min) and aprotinin (t1/2 5.4 min). A maximal inhibition of ANP degradation was obtained when both inhibitors were given simultaneously (t1/2 15 min). In blood samples taken during infusion of 125I-ANP and phosphoramidon, the intact peptide accounted for more than 90% of total circulating radioactivity, and no cleavage product was present in detectable amounts. Phosphoramidon had no effect on the metabolism of infused ANP'. In contrast, when 125I-ANP' was infused together with aprotinin, the rate of degradation of the infused peptide was reduced by more than 80%. It is proposed that two different peptidase activities, E-24.11 and a kallikrein-like proteinase, are responsible for the cleavage of ANP in the circulation. The Cys-Phe-cleaved ANP would in turn be degraded by kallikrein and not by E-24.11.

摘要

在大鼠持续输注¹²⁵I标记的肽期间,研究了心钠素(ANP)和Cys-105-Phe-106裂解的心钠素(ANP')的代谢。循环放射性分析表明,ANP和ANP'清除迅速,平均半衰期分别为0.42分钟和1.04分钟。在输注标记的ANP期间采集的血浆进行高效液相色谱分离,发现存在三种放射性片段,主要片段与¹²⁵I-ANP'共洗脱。这些片段对应于先前发现由内肽酶24.11(E-24.11)在体外作用产生的裂解产物。在评估肽酶抑制剂的作用时,发现磷酰胺脒(半衰期7.8分钟)和抑肽酶(半衰期5.4分钟)可使ANP的半衰期显著延长。同时给予两种抑制剂时,可获得对ANP降解的最大抑制(半衰期15分钟)。在输注¹²⁵I-ANP和磷酰胺脒期间采集的血样中,完整肽占循环总放射性的90%以上,且未检测到可检测量的裂解产物。磷酰胺脒对输注的ANP'的代谢无影响。相反,当¹²⁵I-ANP'与抑肽酶一起输注时,输注肽的降解速率降低了80%以上。有人提出,两种不同的肽酶活性,即E-24.11和一种激肽释放酶样蛋白酶,负责循环中ANP的裂解。Cys-Phe裂解的ANP反过来将由激肽释放酶降解,而不是由E-24.11降解。

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本文引用的文献

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