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温度升高引起的核结构变化。

Changes of nuclear structure induced by increasing temperatures.

作者信息

Vergani L, Mascetti G, Nicolini C

机构信息

Department of Biophysical Sciences and Technologies M & O, School of Medicine, University of Genova, Italy.

出版信息

J Biomol Struct Dyn. 2001 Feb;18(4):535-44. doi: 10.1080/07391102.2001.10506686.

Abstract

Despite the recent improvement in understanding the higher-order structure of chromatin fibers, the organization of interphase chromosomes in specific nuclear domains emerged only recently and it is still controversial. This study took advantage of an integrated approach using complementary techniques in order to investigate the structure and organization of chromatin in interphase nucleus. Native CHO-K1 cells were progressively heated from 310 K to 410 K and the effects of increasing temperatures on nuclear chromatin were analyzed in situ by means of cytometric and calorimetric techniques. Distribution and organization of chromatin domains were analyzed by Fluorescence microscopy, while the mean condensation of nuclear chromatin was measured by Differential scanning calorimetry. The results show as changes of nuclear structures (envelope and matrix, namely) affect significantly organization and condensation of in situ chromatin. Moreover when volume is modified by an external force (the temperature gradient in our case) we observe significant alterations of chromatin structure. These data are in accordance with the hypothesis of an inverse relationship between nuclear volume and chromatin condensation.

摘要

尽管最近在理解染色质纤维的高级结构方面有所进展,但间期染色体在特定核区域的组织直到最近才出现,而且仍然存在争议。本研究利用一种综合方法,运用互补技术来研究间期细胞核中染色质的结构和组织。将天然的CHO-K1细胞从310 K逐步加热到410 K,并通过细胞计数和量热技术原位分析温度升高对核染色质的影响。通过荧光显微镜分析染色质结构域的分布和组织,同时用差示扫描量热法测量核染色质的平均凝聚程度。结果表明,核结构(即核膜和核基质)的变化会显著影响原位染色质的组织和凝聚。此外,当通过外力(在我们的例子中是温度梯度)改变体积时,我们观察到染色质结构发生了显著变化。这些数据符合核体积与染色质凝聚呈反比关系的假设。

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