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Loss of A-type lamins and genomic instability.

机译:A型lamin的丢失和基因组不稳定。

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摘要

Research performed in the last few years has revealed important roles for the spatial and temporal organization of the genome on genome function and integrity. A challenge in the field is to determine the molecular mechanisms involved in the organization of genome function. A-type lamins, key structural components of the nucleus, have been implicated in the maintenance of nuclear architecture and chromatin structure. Interestingly, alterations of A-type lamins lead to defects in DNA replication and repair as well as gene transcription and silencing. Elucidating the functions of these proteins is a topical subject since alterations of A-type lamins are associated with a variety of human diseases, ranging from muscular dystrophies and premature aging syndromes to cancer. Here, we discuss novels roles for A-type lamins in the maintenance of telomere structure, length and function as well as in the stabilization of a key DNA damage response factor. These studies support the notion that increased genomic instability due to defects in telomere biology and DNA repair contribute to the pathogenesis of lamin-related diseases.
机译:最近几年进行的研究表明,基因组的空间和时间组织对基因组功能和完整性具有重要作用。该领域的挑战是确定参与基因组功能组织的分子机制。 A型核纤层蛋白是细胞核的关键结构成分,与维持核结构和染色质结构有关。有趣的是,A型lamin的改变导致DNA复制和修复以及基因转录和沉默中的缺陷。阐明这些蛋白质的功能是一个主题,因为A型lamin的改变与多种人类疾病有关,从肌肉营养不良和早衰综合症到癌症。在这里,我们讨论端粒结构,长度和功能的维持,以及在关键的DNA损伤反应因子的稳定中A型lamins小说角色。这些研究支持以下观念:由于端粒生物学和DNA修复缺陷导致基因组不稳定性增加,导致了与lamin相关疾病的发病机理。

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