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利用重组痘苗病毒测定类固醇21-羟化酶基因(CYP21)突变的功能效应。

Determination of functional effects of mutations in the steroid 21-hydroxylase gene (CYP21) using recombinant vaccinia virus.

作者信息

Tusie-Luna M T, Traktman P, White P C

机构信息

Division of Pediatric Endocrinology, Cornell University Medical College, New York, New York 10021.

出版信息

J Biol Chem. 1990 Dec 5;265(34):20916-22.

PMID:2249999
Abstract

Steroid 21-hydroxylase (P450c21) is absent or defective in more than 90% of patients with congenital adrenal hyperplasia. This disorder of cortisol biosynthesis occurs in a wide spectrum of clinical severity; specific mutations in the 21-hydroxylase gene (CYP21) have been found in association with particular clinical phenotypes. To determine the functional effects of mutations causing amino acid substitutions, normal P450c21 and three mutagenized P450c21 enzymes were expressed at high levels in cultured COS-1 cells using recombinant vaccinia virus. A single amino acid substitution (Val281----Leu) present in patients with mild "nonclassical" 21-hydroxylase deficiency resulted in an enzyme with 20-50% of normal activity. A mutation (Ile172----Asn) identified in patients with the "simple virilizing" form (poor cortisol synthesis but adequate aldosterone synthesis) resulted in an enzyme with less than 2% of normal activity. Finally, a cluster mutation (Ile-Val-Glu-Met234-238----Asn-Glu-Glu-Lys) found in a patient with severe "salt wasting" 21-hydroxylase deficiency (inadequate aldosterone synthesis) results in an enzyme with no detectable activity. These data indicate that the severity of 21-hydroxylase deficiency correlates with the degree of enzymatic compromise.

摘要

在超过90%的先天性肾上腺皮质增生患者中,类固醇21-羟化酶(P450c21)缺失或存在缺陷。这种皮质醇生物合成障碍在临床上有广泛的严重程度范围;已发现21-羟化酶基因(CYP21)中的特定突变与特定临床表型相关。为了确定导致氨基酸取代的突变的功能影响,使用重组痘苗病毒在培养的COS-1细胞中高水平表达正常的P450c21和三种诱变的P450c21酶。轻度“非经典”21-羟化酶缺乏患者中存在的单个氨基酸取代(Val281→Leu)导致一种活性为正常活性20%-50%的酶。在“单纯男性化”型患者(皮质醇合成不良但醛固酮合成充足)中鉴定出的一种突变(Ile172→Asn)导致一种活性低于正常活性2%的酶。最后,在一名严重“失盐型”21-羟化酶缺乏患者(醛固酮合成不足)中发现的一组突变(Ile-Val-Glu-Met234-238→Asn-Glu-Glu-Lys)导致一种无检测到活性的酶。这些数据表明21-羟化酶缺乏的严重程度与酶功能受损程度相关。

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