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Mitotic checkpoint proteins Mad1 and Mad2 - Structural and functional relationship with implication in genetic diseases

机译:有丝分裂检查点蛋白Mad1和Mad2-遗传疾病中的结构和功能关系

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摘要

In normal cells, the accuracy of chromosome segregation which assures cells euploidy depends on mitosis mechanics and on proper functioning of a specific complex of proteins represented by the error-checking spindle assembly checkpoint (SAC). SAC proteins are deeply involved in correct cell divisions, but some of these, such as mitotic arrest-deficient proteins (Mad1 and Mad2), are critical. Mad1 and Mad2 are involved in preventing "wrong" cellular divisions which lead to cellular aneuploidy and are recognized as inductors of genetic disorders, as well as activators of oncoproteins. To clarify aneuploidy involvement in the evolution of cancer or other genetic disorders, structural and functional specificity of spindle checkpoint proteins have been analyzed, but the process is still poorly understood. In order to better understand SAC proteins involvement in initiation of cancer and other genetic disorders, here we review studies that conducted to relevant structural and functional information regarding these proteins. The results of these studies suggest that minor changes in structure and functionality of SAC proteins are able to generate aneuploidy. Therefore, a deeper understanding of Mad1 and Mad2 structural changes obtained by experimental and theoretical studies could open new perspectives of genetic medicine.
机译:在正常细胞中,确保细胞整倍性的染色体分离的准确性取决于有丝分裂机制以及由错误检查纺锤体装配检查点(SAC)代表的特定蛋白质复合物的正常功能。 SAC蛋白与正确的细胞分裂密切相关,但是其中一些,例如有丝分裂阻滞缺陷蛋白(Mad1和Mad2),是至关重要的。 Mad1和Mad2参与防止导致细胞非整倍性的“错误”细胞分裂,被认为是遗传疾病的诱因以及癌蛋白的激活剂。为了阐明非整倍体参与癌症或其他遗传疾病的进化,已经对纺锤体检查点蛋白的结构和功能特异性进行了分析,但是对这一过程的了解仍然很少。为了更好地理解SAC蛋白参与癌症和其他遗传疾病的发生,在这里我们回顾针对这些蛋白的相关结构和功能信息进行的研究。这些研究的结果表明,SAC蛋白的结构和功能的微小变化能够产生非整倍性。因此,对通过实验和理论研究获得的Mad1和Mad2结构变化的更深入了解可以为基因医学打开新的视野。

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