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克隆的人皮肤成纤维细胞中甾体5α-还原酶活性的变化。亚克隆后表型表达从高活性向低活性转变。

Variation in steroid 5 alpha-reductase activity in cloned human skin fibroblasts. Shift in phenotypic expression from high to low activity upon subcloning.

作者信息

Griffin J E, Allman D R, Durrant J L, Wilson J D

出版信息

J Biol Chem. 1981 Apr 25;256(8):3662-6.

PMID:6938516
Abstract

Steroid 5 alpha-reductase in skin fibroblasts varies in two ways: 1) mean activity in uncloned fibroblasts corresponds to the activity in skin from which fibroblasts are derived (high in genital skin and low in nongenital skin); 2) activity in normal genital skin fibroblasts varies over a wide range (more than 200-fold). Studies of activity in fibroblast clones provides an explanation for this variability. Activity in clones of genital skin fibroblasts varies from the limits of detectability to very high levels, whereas activity in fibroblasts cloned from nongenital skin is uniformly low. The mean value of 5 alpha-reductase in genital skin clones is similar to the value in uncloned fibroblasts from the same explant. This suggests that the numbers of high and low activity cells in a given explant influence the overall enzyme activity. Variability among normal genital skin strains is also due to inherent differences in the range of enzyme activities. Furthermore, high activity genital skin clones give rise to a mixture of both high and low-activity subclones, whereas low activity genital skin and nongenital skin clones give rise to populations with uniformly low activity. Thus, with time genital skin gives rise to high activity fibroblasts that continually undergo shift in phenotypic expression to low activity.

摘要

皮肤成纤维细胞中的类固醇5α-还原酶在两个方面存在差异:1)未克隆的成纤维细胞中的平均活性与成纤维细胞来源的皮肤中的活性相对应(生殖器皮肤中高,非生殖器皮肤中低);2)正常生殖器皮肤成纤维细胞中的活性在很宽的范围内变化(超过200倍)。对成纤维细胞克隆中活性的研究为这种变异性提供了解释。生殖器皮肤成纤维细胞克隆中的活性从可检测的极限到非常高的水平不等,而从非生殖器皮肤克隆的成纤维细胞中的活性则始终较低。生殖器皮肤克隆中5α-还原酶的平均值与来自同一外植体的未克隆成纤维细胞中的值相似。这表明给定外植体中高活性和低活性细胞的数量会影响整体酶活性。正常生殖器皮肤菌株之间的变异性也归因于酶活性范围的固有差异。此外,高活性生殖器皮肤克隆会产生高活性和低活性亚克隆的混合物,而低活性生殖器皮肤和非生殖器皮肤克隆会产生活性始终较低的群体。因此,随着时间的推移,生殖器皮肤会产生高活性的成纤维细胞,这些细胞会不断经历表型表达向低活性的转变。

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