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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Molecular functions and cellular roles of the ChlR1 (DDX11) helicase defective in the rare cohesinopathy Warsaw breakage syndrome
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Molecular functions and cellular roles of the ChlR1 (DDX11) helicase defective in the rare cohesinopathy Warsaw breakage syndrome

机译:ChlR1(DDX11)解旋酶缺陷的分子功能和细胞作用在罕见的黏膜病华沙断裂综合征中

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摘要

In 2010, a new recessive cohesinopathy disorder, designated Warsaw breakage syndrome (WABS), was described. The individual with WABS displayed microcephaly, pre- and postnatal growth retardation, and abnormal skin pigmentation. Cytogenetic analysis revealed mitomycin C (MMC)-induced chromosomal breakage; however, an additional sister chromatid cohesion defect was also observed. WABS is genetically linked to bi-allelic mutations in the ChlR1/DDX11 gene which encodes a protein of the conserved family of Iron-Sulfur (Fe-S) cluster DNA helicases. Mutations in the budding yeast ortholog of ChlR1, known as Chl1, were known to cause sister chromatid cohesion defects, indicating a conserved function of the gene. In 2012, three affected siblings were identified with similar symptoms to the original WABS case, and found to have a homozygous mutation in the conserved Fe-S domain of ChlR1, confirming the genetic linkage. Significantly, the clinically relevant mutations perturbed ChlR1 DNA unwinding activity. In addition to its genetic importance in human disease, ChlR1 is implicated in papillomavirus genome maintenance and cancer. Although its precise functions in genome homeostasis are still not well understood, ongoing molecular studies of ChlR1 suggest the helicase plays a critically important role in cellular replication and/or DNA repair.
机译:在2010年,描述了一种新的隐性凝聚力疾病,称为华沙断裂综合征(WABS)。 WABS患者表现出小头畸形,产前和产后生长迟缓以及皮肤色素沉着异常。细胞遗传学分析显示丝裂霉素C(MMC)引起的染色体断裂。然而,还观察到另外的姐妹染色单体内聚缺陷。 WABS与ChlR1 / DDX11基因中的双等位基因突变遗传相连,该基因编码保守的铁硫(Fe-S)簇DNA解旋酶家族蛋白。已知ChlR1的发芽酵母直向同源物中的突变(称为Chl1)会导致姐妹染色单体内聚缺陷,表明该基因的保守功能。 2012年,确定了三个受影响的兄弟姐妹,其症状与最初的WABS病例相似,并且发现其在ChlR1的保守Fe-S结构域中具有纯合突变,从而确认了遗传关联。有意义的是,临床相关突变扰乱了ChlR1 DNA的解绕活性。除了在人类疾病中的遗传重要性外,ChlR1还与乳头瘤病毒基因组维护和癌症有关。尽管其在基因组动态平衡中的确切功能尚不清楚,但正在进行的ChlR1分子研究表明,解旋酶在细胞复制和/或DNA修复中起着至关重要的作用。

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