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MAMLD1(CXorf6):一种与尿道下裂相关的新基因。

MAMLD1 (CXorf6): a new gene involved in hypospadias.

作者信息

Ogata Tsutomu, Laporte Jocelyn, Fukami Maki

机构信息

Department of Endocrinology and Metabolism, National Research Institute for Child Health and Development, 2-10-1 Ohkura, Setagaya, Tokyo 157-8535, Japan.

出版信息

Horm Res. 2009;71(5):245-52. doi: 10.1159/000208797. Epub 2009 Apr 1.

Abstract

MAMLD1 (mastermind-like domain containing 1), previously known as CXorf6 (chromosome X open reading frame 6), has been shown to be a causative gene for hypospadias. This is primarily based on the identification of nonsense mutations (E124X, Q197X, and R653X), which undergo nonsense-mediated mRNA decay, in patients with penoscrotal hypospadias. Subsequent studies have shown that (1) the mouse homolog is transiently expressed in fetal Sertoli and Leydig cells around the critical period of sex development; (2) transient knockdown of MAMLD1 results in significantly reduced testosterone production in murine Leydig tumor cells; (3) MAMLD1 protein shares homology to mastermind-like 2 (MAML2) protein that functions as a co-activator in canonical Notch signaling; (4) MAMLD1 localizes to the nuclear bodies and transactivates the promoter activity of a non-canonical Notch target gene hairy/enhancer of split 3 (Hes3), rather than the canonical Notch target genes such as Hes1 and Hes5, without demonstrable DNA-binding capacity, and (5) MAMLD1 is regulated by steroidogenic factor 1. These findings suggest that the MAMLD1 mutations cause hypospadias primarily because of compromised testosterone production around the critical period of sex development, and provide useful information for the molecular network involved in fetal testosterone production.

摘要

MAMLD1(含类主谋结构域1),以前称为CXorf6(X染色体开放阅读框6),已被证明是尿道下裂的致病基因。这主要基于在阴囊型尿道下裂患者中发现了无义突变(E124X、Q197X和R653X),这些突变会经历无义介导的mRNA降解。随后的研究表明:(1)小鼠同源物在性发育关键期周围的胎儿支持细胞和间质细胞中短暂表达;(2)MAMLD1的短暂敲低会导致小鼠间质细胞瘤细胞中睾酮产生显著减少;(3)MAMLD1蛋白与类主谋2(MAML2)蛋白具有同源性,后者在经典Notch信号通路中作为共激活因子发挥作用;(4)MAMLD1定位于核体,可激活非经典Notch靶基因毛状分裂增强子3(Hes3)的启动子活性,而不是像Hes1和Hes5这样的经典Notch靶基因,且没有可证明的DNA结合能力;(5)MAMLD1受类固醇生成因子1调控。这些发现表明,MAMLD1突变导致尿道下裂主要是因为在性发育关键期周围睾酮产生受损,并为胎儿睾酮产生所涉及的分子网络提供了有用信息。

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