首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Heat Shock Protein 90 Functions to Stabilize and Activate the Testis-specific Serine/Threonine Kinases a Family of Kinases Essential for Male Fertility
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Heat Shock Protein 90 Functions to Stabilize and Activate the Testis-specific Serine/Threonine Kinases a Family of Kinases Essential for Male Fertility

机译:热休克蛋白90具有稳定和激活睾丸特异性丝氨酸/苏氨酸激酶的功能这是男性生育必不可少的激酶家族

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摘要

Spermiogenesis is characterized by a profound morphological differentiation of the haploid spermatid into spermatozoa. The testis-specific serine/threonine kinases (TSSKs) comprise a family of post-meiotic kinases expressed in spermatids, are critical to spermiogenesis, and are required for male fertility in mammals. To explore the role of heat shock protein 90 (HSP90) in regulation of TSSKs, the stability and catalytic activity of epitope-tagged murine TSSKs were assessed in 293T and COS-7 cells. TSSK1, -2, -4, and -6 (small serine/threonine kinase) were all found to associate with HSP90, and pharmacological inhibition of HSP90 function using the highly specific drugs 17-AAG, SNX-5422, or NVP-AUY922 reduced TSSK protein levels in cells. The attenuation of HSP90 function abolished the catalytic activities of TSSK4 and -6 but did not significantly alter the specific activities of TSSK1 and -2. Inhibition of HSP90 resulted in increased TSSK ubiquitination and proteasomal degradation, indicating that HSP90 acts to control ubiquitin-mediated catabolism of the TSSKs. To study HSP90 and TSSKs in germ cells, a mouse primary spermatid culture model was developed and characterized. Using specific antibodies against murine TSSK2 and -6, it was demonstrated that HSP90 inhibition resulted in a marked decrease of the endogenous kinases in spermatids. Together, our findings demonstrate that HSP90 plays a broad and critical role in stabilization and activation of the TSSK family of protein kinases.
机译:精子发生的特征是单倍体精子向精子的形态学分化。睾丸特异的丝氨酸/苏氨酸激酶(TSSK)包含一族在精子细胞中表达的减数分裂后激酶家族,对精子发生至关重要,是哺乳动物雄性繁殖所必需的。为了探索热休克蛋白90(HSP90)在调节TSSK中的作用,在293T和COS-7细胞中评估了抗原决定簇标记的小鼠TSSK的稳定性和催化活性。 TSSK1,-2,-4和-6(小的丝氨酸/苏氨酸激酶)均与HSP90相关,并且使用高度特异性的药物17-AAG,SNX-5422或NVP-AUY922降低了对HSP90功能的药理抑制作用细胞中的TSSK蛋白水平。 HSP90功能的减弱取消了TSSK4和-6的催化活性,但没有显着改变TSSK1和-2的比活性。 HSP90的抑制导致TSSK泛素化和蛋白酶体降解的增加,表明HSP90发挥作用以控制TSSK的泛素介导的分解代谢。为了研究生殖细胞中的HSP90和TSSK,开发并鉴定了小鼠原代精子培养模型。使用针对鼠TSSK2和-6的特异性抗体,已证明HSP90抑制导致精子中内源激酶的显着减少。总之,我们的发现表明HSP90在稳定和激活TSSK蛋白激酶家族中起着广泛而关键的作用。

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