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试剂盒/干细胞因子受体诱导的磷脂酰肌醇3'-激酶激活对雄性生育至关重要。

Kit/stem cell factor receptor-induced activation of phosphatidylinositol 3'-kinase is essential for male fertility.

作者信息

Blume-Jensen P, Jiang G, Hyman R, Lee K F, O'Gorman S, Hunter T

机构信息

Molecular Biology and Virology Laboratory, The Salk Institute, La Jolla, California, USA.

出版信息

Nat Genet. 2000 Feb;24(2):157-62. doi: 10.1038/72814.

Abstract

The c-kit-encoded transmembrane tyrosine kinase receptor for stem cell factor (Kit/SCF-R) is required for normal haematopoiesis, melanogenesis and gametogenesis. However, the roles of individual Kit/SCF-R-induced signalling pathways in the control of developmental processes in the intact animal are completely unknown. To examine the function of SCF-induced phosphatidylinositol (PI) 3'-kinase activation in vivo, we employed the Cre-loxP system to mutate the codon for Tyr719, the PI 3'-kinase binding site in Kit/SCF-R, to Phe in the genome of mice by homologous recombination. Homozygous (Y719F/Y719F) mutant mice are viable. The mutation completely disrupted PI 3'-kinase binding to Kit/SCF-R and reduced SCF-induced PI 3'-kinase-dependent activation of Akt by 90%. The mutation induced a gender- and tissue-specific defect. Although there are no haematopoietic or pigmentation defects in homozygous mutant mice, males are sterile due to a block in spermatogenesis, with initially decreased proliferation and subsequent extensive apoptosis occurring at the spermatogonial stem-cell level. In contrast, female homozygotes are fully fertile. This is the first report so far demonstrating the role of an individual signalling pathway downstream of Kit/SCF-R in the intact animal. It provides the first in vivo model for male sterility caused by a discrete signalling pathway defect affecting early germ cells.

摘要

干细胞因子的c-kit编码跨膜酪氨酸激酶受体(Kit/SCF-R)对于正常造血、黑色素生成和配子发生是必需的。然而,在完整动物中,单个Kit/SCF-R诱导的信号通路在发育过程控制中的作用完全未知。为了在体内研究SCF诱导的磷脂酰肌醇(PI)3'-激酶激活的功能,我们利用Cre-loxP系统通过同源重组将Kit/SCF-R中PI 3'-激酶结合位点的酪氨酸719密码子突变为苯丙氨酸,使其在小鼠基因组中发生突变。纯合(Y719F/Y719F)突变小鼠是可存活的。该突变完全破坏了PI 3'-激酶与Kit/SCF-R的结合,并使SCF诱导的Akt的PI 3'-激酶依赖性激活降低了90%。该突变诱导了性别和组织特异性缺陷。虽然纯合突变小鼠没有造血或色素沉着缺陷,但雄性由于精子发生受阻而不育,最初在精原干细胞水平上增殖减少,随后发生广泛凋亡。相比之下,雌性纯合子完全可育。这是迄今为止的第一份报告,证明了Kit/SCF-R下游单个信号通路在完整动物中的作用。它为因影响早期生殖细胞的离散信号通路缺陷导致的雄性不育提供了首个体内模型。

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