Literature DB >> 24724894

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

Speranta Avram, Maria Mernea, Dan Florin Mihailescu, Corina Duda Seiman, Daniel Duda Seiman, Mihai Viorel Putz1.   

Abstract

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.

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Year:  2014        PMID: 24724894     DOI: 10.2174/1573409910666140410124315

Source DB:  PubMed          Journal:  Curr Comput Aided Drug Des        ISSN: 1573-4099            Impact factor:   1.606


  2 in total

1.  A genome-wide association study identifies two novel susceptibility loci and trans population polygenicity associated with bipolar disorder.

Authors:  M Ikeda; A Takahashi; Y Kamatani; Y Okahisa; H Kunugi; N Mori; T Sasaki; T Ohmori; Y Okamoto; H Kawasaki; S Shimodera; T Kato; H Yoneda; R Yoshimura; M Iyo; K Matsuda; M Akiyama; K Ashikawa; K Kashiwase; K Tokunaga; K Kondo; T Saito; A Shimasaki; K Kawase; T Kitajima; K Matsuo; M Itokawa; T Someya; T Inada; R Hashimoto; T Inoue; K Akiyama; H Tanii; H Arai; S Kanba; N Ozaki; I Kusumi; T Yoshikawa; M Kubo; N Iwata
Journal:  Mol Psychiatry       Date:  2017-01-24       Impact factor: 15.992

2.  Insight into the Structural Determinants of Imidazole Scaffold-Based Derivatives as TNF-α Release Inhibitors by in Silico Explorations.

Authors:  Yuan Wang; Mingwei Wu; Chunzhi Ai; Yonghua Wang
Journal:  Int J Mol Sci       Date:  2015-08-25       Impact factor: 5.923

  2 in total

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