Suppr超能文献

哺乳动物细胞中药物诱导的G2期阻滞的分子基础。

The molecular basis of drug-induced G2 arrest in mammalian cells.

作者信息

Rao P N

出版信息

Mol Cell Biochem. 1980 Jan 16;29(1):47-57. doi: 10.1007/BF00230954.

Abstract

The purpose of this review was to focus mainly on the molecular events related to the progression of cells through the G2 period to examine the cause for G2-arrest in mammalian cells after exposure to various anticancer drugs. With few exceptions, most of the eukaryotic cells exhibit a G2 period in their life cycles. The G2 period, which separates S phase from mitosis, represents the time necessary for the synthesis of the various components related to the condensation of chromosomes, assembly of the mitotic spindle, and cytokinesis. Continued synthesis of RNA and protein is necessary for the successful completion of G2 and the initiation of mitosis. Inhibition of RNA and protein synthesis, replacement of phenylalanine by its analog paraversible G2 arrest in cultured cells. Exposure of cells to certain antineoplastic drugs also blocks cells preferentially in G2. This irreversible drug-induced G2 arrest is associated with extensive chromosome damage. The G2-arrested cells were found to be deficient in certain proteins that may be specific for the G2-mitotic transition. These mitotic or chromosome condensation factors synthesized during the G2 period, reach their maximum levels at mitosis. A preliminary characterization of the chromosome condensation factor revealed that it is a heat labile, Ca2+-sensitive, nondialyzable protein with a sedimentation value of 4-5S.

摘要

本综述的目的主要是聚焦于与细胞通过G2期进程相关的分子事件,以探究哺乳动物细胞在接触各种抗癌药物后发生G2期阻滞的原因。除少数例外情况外,大多数真核细胞在其生命周期中都有一个G2期。G2期将S期与有丝分裂分开,代表了合成与染色体凝聚、有丝分裂纺锤体组装及胞质分裂相关的各种成分所需的时间。持续的RNA和蛋白质合成对于成功完成G2期及启动有丝分裂是必要的。RNA和蛋白质合成的抑制、用其类似物对苯丙氨酸的替代可导致培养细胞中可逆的G2期阻滞。将细胞暴露于某些抗肿瘤药物也会优先使细胞在G2期阻滞。这种不可逆的药物诱导的G2期阻滞与广泛的染色体损伤有关。发现G2期阻滞的细胞缺乏某些可能对G2期-有丝分裂转变具有特异性的蛋白质。这些在G2期合成的有丝分裂或染色体凝聚因子在有丝分裂时达到其最高水平。对染色体凝聚因子的初步表征显示,它是一种热不稳定、对Ca2+敏感、不可透析的蛋白质,沉降值为4-5S。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验