Instituto de Biología y Medicina Experimental (IByME-CONICET), Buenos Aires, Argentina.
Instituto de Investigación y Tecnología en Reproducción Animal, Facultad de Ciencias Veterinarias, Universidad de Buenos Aires, Buenos Aires, Argentina.
Biol Reprod. 2018 Aug 1;99(2):373-383. doi: 10.1093/biolre/ioy048.
Epididymal sperm protein CRISP1 has the ability to both regulate murine CatSper, a key sperm calcium channel, and interact with egg-binding sites during fertilization. In spite of its relevance for sperm function, Crisp1-/-mice are fertile. Considering that phenotypes can be influenced by the genetic background, in the present work mice from the original mixed Crisp1-/- colony (129/SvEv*C57BL/6) were backcrossed onto the C57BL/6 strain for subsequent analysis of their reproductive phenotype. Whereas fertility and fertilization rates of C57BL/6 Crisp1-/- males did not differ from those reported for mice from the mixed background, several sperm functional parameters were clearly affected by the genetic background. Crisp1-/- sperm from the homogeneous background exhibited defects in both the progesterone-induced acrosome reaction and motility not observed in the mixed background, and normal rather than reduced protein tyrosine phosphorylation. Additional studies revealed a significant decrease in sperm hyperactivation as well as in cAMP and protein kinase A (PKA) substrate phosphorylation levels in sperm from both colonies. The finding that exposure of mutant sperm to a cAMP analog and phosphodiesterase inhibitor overcame the sperm functional defects observed in each colony indicated that a common cAMP-PKA signaling defect led to different phenotypes depending on the genetic background. Altogether, our observations indicate that the phenotype of CRISP1 null males is modulated by the genetic context and reveal new roles for the protein in both the functional events and signaling pathways associated to capacitation.
附睾精子蛋白 CRISP1 具有调节小鼠 CatSper 的能力,CatSper 是一种关键的精子钙通道,并在受精过程中与卵结合位点相互作用。尽管它与精子功能有关,但 Crisp1-/- 小鼠是可育的。考虑到表型可能受到遗传背景的影响,在本工作中,来自原始混合 Crisp1-/- 品系(129/SvEv*C57BL/6)的小鼠被回交至 C57BL/6 品系,以进一步分析其生殖表型。尽管 C57BL/6 Crisp1-/- 雄性的生育力和受精率与混合背景下报道的小鼠没有差异,但几种精子功能参数显然受到遗传背景的影响。来自同质背景的 Crisp1-/- 精子表现出孕酮诱导的顶体反应和运动缺陷,而在混合背景下没有观察到这些缺陷,并且蛋白酪氨酸磷酸化正常而不是减少。进一步的研究表明,在两个品系的精子中,精子超激活以及 cAMP 和蛋白激酶 A(PKA)底物磷酸化水平显著下降。发现突变体精子暴露于 cAMP 类似物和磷酸二酯酶抑制剂可以克服每个品系观察到的精子功能缺陷,这表明共同的 cAMP-PKA 信号缺陷导致了不同的遗传背景下的表型。总之,我们的观察表明,CRISP1 缺失雄性的表型受到遗传背景的调节,并揭示了该蛋白在与获能相关的功能事件和信号通路中的新作用。