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米色小鼠突变的细胞表达及其在与对照人成纤维细胞杂交中的校正。

Cellular expression of the beige mouse mutation and its correction in hybrids with control human fibroblasts.

作者信息

Gow J B, Lainwala S, Lyerla T A

机构信息

Department of Biology, Clark University, Worcester, Massachusetts 01610.

出版信息

In Vitro Cell Dev Biol Anim. 1993 Nov;29A(11):884-91. doi: 10.1007/BF02631368.

Abstract

Fibroblasts from a beige mouse (C57BL/6J; bgJ bgJ) have been established and maintained in culture for more than 3 yr. At early passages, the mutant cells were distinguishable from C57BL/6J control mouse fibroblasts at the ultrastructural level by the presence of enlarged cytoplasmic granules. After continuous passaging, this distinguishing feature was lost from the mutant cells, correlated with their increased growth rate. Clustered, perinuclear distribution of lysosomes was retained, however, and was quantitatively different at any passage number of the beige cell line from the dispersed distribution of these organelles in control mouse fibroblasts, as analyzed by computer-aided, video-enhanced light microscopy. In somatic cell hybrids between the established beige cell line and a control human diploid fibroblast cell strain, seven uncorrected hybrid lines retained a lysosomal dispersion pattern statistically indistinguishable from that of the beige mouse cell lines. Three corrected hybrid lines had lysosomal dispersion patterns that were significantly different from the beige parent line and indistinguishable from that of the control mouse fibroblast line. Thus, lysosomal dispersion can be used objectively and quantitatively to distinguish mutant beige and control mouse fibroblasts and corrected vs. uncorrected cell hybrids made from the beige/control human somatic cell crosses.

摘要

来自一只米色小鼠(C57BL/6J;bgJ bgJ)的成纤维细胞已被建立并在培养中维持了3年多。在早期传代时,通过存在增大的细胞质颗粒,突变细胞在超微结构水平上可与C57BL/6J对照小鼠成纤维细胞区分开来。连续传代后,突变细胞失去了这一显著特征,这与其生长速率增加相关。然而,溶酶体的聚集性、核周分布得以保留,并且通过计算机辅助的视频增强光学显微镜分析,在米色细胞系的任何传代数时,溶酶体的这种分布在数量上与对照小鼠成纤维细胞中这些细胞器的分散分布不同。在已建立的米色细胞系与对照人二倍体成纤维细胞株之间的体细胞杂种中,七个未校正的杂种系保留了一种溶酶体分散模式,在统计学上与米色小鼠细胞系的模式无法区分。三个校正的杂种系具有与米色亲本系显著不同且与对照小鼠成纤维细胞系无法区分的溶酶体分散模式。因此,溶酶体分散可被客观且定量地用于区分突变的米色和对照小鼠成纤维细胞,以及由米色/对照人体细胞杂交产生的校正与未校正细胞杂种。

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