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46,XY完全性纯性腺发育不全患者中突变SRY的DNA结合活性研究及计算方法

DNA binding activity studies and computational approach of mutant SRY in patients with 46, XY complete pure gonadal dysgenesis.

作者信息

Sánchez-Moreno Irene, Canto Patricia, Munguía Patricia, de León Mario Bermúdez, Cisneros Bulmaro, Vilchis Felipe, Reyes Edgardo, Méndez Juan Pablo

机构信息

Instituto Mexicano del Seguro Social, Unidad de Investigación Médica en Biología del Desarrollo, Centro Médico Nacional Siglo XXI, Coordinación de Investigación en Salud, Mexico, D.F., Mexico.

出版信息

Mol Cell Endocrinol. 2009 Feb 27;299(2):212-8. doi: 10.1016/j.mce.2008.10.012. Epub 2008 Oct 19.

Abstract

Mutations of SRY are the cause of 46,XY complete pure gonadal dysgenesis (PGD) in 10-15% of patients. In this study, DNA was isolated and sequenced from blood leukocytes and from paraffin-embedded gonadal tissue in five patients with 46,XY complete PGD. DNA binding capability was analyzed by three different methods. The structure of the full length SRY and its mutant proteins was carried out using a protein molecular model. DNA analysis revealed two mutations and one synonymous polymorphism: in patient #4 a Y96C mutation, and a E156 polymorphism; in patient #5 a S143G mosaic mutation limited to gonadal tissue. We demonstrated, by all methods used, that both mutant proteins reduced SRY DNA binding activity. The three-dimensional structure of SRY suggested that besides the HMG box, the carboxy-terminal region of SRY interacts with DNA. In conclusion, we identified two SRY mutations and a polymorphism in two patients with 46,XY complete PGD, demonstrating the importance of the carboxy-terminal region of SRY in DNA binding activity.

摘要

SRY突变是10% - 15%的46,XY型完全性纯性腺发育不全(PGD)患者的病因。在本研究中,从5例46,XY型完全性PGD患者的血液白细胞和石蜡包埋的性腺组织中分离DNA并进行测序。通过三种不同方法分析DNA结合能力。使用蛋白质分子模型对全长SRY及其突变蛋白的结构进行了研究。DNA分析发现了两个突变和一个同义多态性:在患者4中,有Y96C突变和E156多态性;在患者5中,有一个局限于性腺组织的S143G嵌合突变。我们通过所有使用的方法证明,两种突变蛋白均降低了SRY的DNA结合活性。SRY的三维结构表明,除HMG盒外,SRY的羧基末端区域也与DNA相互作用。总之,我们在两名46,XY型完全性PGD患者中鉴定出两个SRY突变和一个多态性,证明了SRY羧基末端区域在DNA结合活性中的重要性。

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