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LRR8 中的错义突变与隐睾症有关。

A missense mutation in LRR8 of RXFP2 is associated with cryptorchidism.

机构信息

Department of Medicine, Feinberg School of Medicine, Northwestern University, Arthur J. Rubloff Building, 420 E. Superior St., Suite 12-109, Chicago, IL 60611, USA.

出版信息

Mamm Genome. 2010 Oct;21(9-10):442-9. doi: 10.1007/s00335-010-9291-5. Epub 2010 Oct 22.

Abstract

Using genome-wide mutagenesis with N-ethyl-N-nitrosourea (ENU), a mouse mutant with cryptorchidism was identified. Genome mapping and exon sequencing identified a novel missense mutation (D294G) in Relaxin/insulin-like family peptide receptor 2 (Rxfp2). The mutation impaired testicular descent and resulted in decreased testis weight in Rxfp2 ( DG/DG ) mice compared to Rxfp2 (+/DG ) and Rxfp2 (+/+) mice. Testicular histology of the Rxfp2 ( DG/DG ) mice revealed spermatogenic defects ranging from germ cell loss to tubules with Sertoli-cell-only features. Genetic complementation analysis using a loss-of-function allele (Rxfp2 (-)) confirmed causality of the D294G mutation. Specifically, mice with one of each mutant allele (Rxfp2 ( DG/-)) exhibited decreased testis weight and failure of the testes to descend compared to their Rxfp2 (+/-) littermates. Total and cell-surface expression of mouse RXFP2 protein and intracellular cAMP accumulation were measured. Total expression of the D294G protein was minimally reduced compared to wild-type, but cell-surface expression was markedly decreased. When analyzed for cAMP accumulation, the EC50 was similar for cells transfected with wild-type and mutant RXFP2 receptor. However, the maximum cAMP response that the mutant receptor reached was greatly reduced compared to the wild-type receptor. In silico modeling of leucine rich repeats (LRRs) 7-9 indicated that aspartic acid 294 is located within the β-pleated sheet of LRR8. We thus postulate that mutation of D294 results in protein misfolding and aberrant trafficking. The ENU-induced D294G mutation underscores the role of the INSL3/RXFP2-mediated pathway in testicular descent and expands the repertoire of mutations known to affect receptor trafficking and function.

摘要

利用 N-乙基-N-亚硝基脲(ENU)进行全基因组诱变,鉴定出一种隐睾症的小鼠突变体。基因组图谱和外显子测序鉴定出松弛素/胰岛素样家族肽受体 2(Rxfp2)的一个新错义突变(D294G)。该突变损害了睾丸下降,导致 Rxfp2(DG/DG)小鼠的睾丸重量比 Rxfp2(+/DG)和 Rxfp2(+/+)小鼠低。Rxfp2(DG/DG)小鼠的睾丸组织学显示,从精原细胞丢失到具有 Sertoli 细胞特征的小管,存在精子发生缺陷。使用功能丧失等位基因(Rxfp2(-))进行的遗传互补分析证实了 D294G 突变的因果关系。具体而言,具有每种突变等位基因之一的小鼠(Rxfp2(DG/-))的睾丸重量降低,并且睾丸下降失败,与它们的 Rxfp2(+/ -)同窝仔相比。测量了小鼠 RXFP2 蛋白的总表达和细胞表面表达以及细胞内 cAMP 积累。与野生型相比,D294G 蛋白的总表达略有减少,但细胞表面表达明显减少。当分析 cAMP 积累时,野生型和突变型 RXFP2 受体转染的细胞的 EC50 相似。然而,与野生型受体相比,突变受体达到的最大 cAMP 反应大大降低。7-9 个亮氨酸丰富重复(LRR)的计算机建模表明,天冬氨酸 294 位于 LRR8 的 β-折叠片内。因此,我们推测 D294 的突变导致蛋白质错误折叠和异常转运。ENU 诱导的 D294G 突变强调了 INSL3/RXFP2 介导的途径在睾丸下降中的作用,并扩展了已知影响受体转运和功能的突变谱。

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