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The role of alternative mRNA splicing in chromosome instability.

机译:替代性mRNA剪接在染色体不稳定中的作用。

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Chromosomal instability (CIN) involves the gain or loss of complete or partial chromosomes during cellular division, and it is a common characteristic of tumors that have aneuploidy. In addition, CIN is considered to be a closely related event to carcinogenesis. The mechanisms that lead to CIN include defects in the cohesion of sister chromatids, mitotic spindle checkpoint, and regulation of the number of centrosomes. Different studies have found that transcription variants, also known as isoforms, which are generated by the alternative splicing of exons and introns in mRNA that encodes many of the regulator proteins of chromosomal segregation, have an important role in mechanisms that lead to CIN. The majority of these isoforms are newly described. The discovery of additional isoforms and the study of their mechanisms of action allow a more integrated view of how cells regulate the segregation of their genetic material, and of how errors occur in chromosomal segregation.
机译:染色体不稳定性(CIN)涉及细胞分裂过程中完整或部分染色体的获得或丢失,这是具有非整倍性的肿瘤的共同特征。另外,CIN被认为是与癌发生密切相关的事件。导致CIN的机制包括姐妹染色单体的内聚力缺陷,有丝分裂纺锤体检查点和中心体数目的调节。不同的研究发现,转录变体(也称为同工型)是由编码染色体分离的许多调节蛋白的mRNA中的外显子和内含子交替剪接产生的,在导致CIN的机制中起重要作用。这些同工型的大多数是新描述的。其他同工型的发现及其作用机理的研究使人们对细胞如何调节其遗传物质的分离以及染色体分离中错误的发生方式有了更全面的了解。

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