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对转化表型温度敏感的细胞中染色质的圆二色性和溴化乙锭结合能力

Circular dichroism and ethidium bromide binding capacity of chromatin from cells temperature sensitive for the transformed phenotype.

作者信息

Ide T, Baserga R

出版信息

Biochemistry. 1976 Feb 10;15(3):600-5. doi: 10.1021/bi00648a023.

Abstract

Clone H6-15/163 is a clone of cells, originally derived from SV-40 transformed 3T3 cells, which express the transformed phenotype at low (32 degrees C) but not at high (39 degrees C) temperature. Chromatin was isolated from these cells grown at either temperature and studied by circular dichroism and for its ability to bind the intercalating dye, ethidium bromide. During the exponential phase of growth the chromatins of cells grown at either 32 or 39 degrees C are undistinguishable. Cessation of growth in confluent cultures results in marked changes in circular dichroism spectra and in ethidium bromide binding capacity of chromatin. The changes are much are much more pronounced at 39 degrees C (where the cells truly become quiescent) than at 32 degrees C (where cell proliferation continues although the number of cells per culture remains stationary). Temperature shifts and medium replacement also cause changes in chromatin structure, but the changes are again related to the extent of cell proliferation. It is concluded that the chromatin changes occurring in H6-15/163 cells and detectable by circular dichroism and ethidium bromide binding can be related to the proliferating activity of the cultured cells rather than to the expression of the transformed or untransformed phenotype.

摘要

克隆H6 - 15/163是一种细胞克隆,最初源自SV - 40转化的3T3细胞,该细胞在低温(32摄氏度)下表现出转化表型,而在高温(39摄氏度)下则不表现。从在这两种温度下生长的这些细胞中分离出染色质,并通过圆二色性以及其结合嵌入染料溴化乙锭的能力进行研究。在生长的指数期,在32摄氏度或39摄氏度下生长的细胞的染色质无法区分。汇合培养物中生长的停止导致染色质的圆二色性光谱和溴化乙锭结合能力发生显著变化。这些变化在39摄氏度(此时细胞真正进入静止状态)比在32摄氏度(此时尽管每个培养物中的细胞数量保持不变,但细胞增殖仍在继续)更为明显。温度变化和培养基更换也会导致染色质结构的变化,但这些变化同样与细胞增殖的程度有关。得出的结论是,在H6 - 15/163细胞中发生的、可通过圆二色性和溴化乙锭结合检测到的染色质变化可能与培养细胞的增殖活性有关,而不是与转化或未转化表型的表达有关。

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