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Planar cell polarity protein Dishevelled 3 (Dvl3) regulates ectoplasmic specialization (ES) dynamics in the testis through changes in cytoskeletal organization

机译:平面细胞极性蛋白Disheveled 3(Dvl3)通过细胞骨架组织的变化调节睾丸的胞浆特化(ES)动态

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摘要

In the mammalian testes, such as in rats, the directional alignment of polarized elongating/elongated spermatids, in particular step 17–19 spermatids, across the plane of seminiferous epithelium resembles planar cell polarity (PCP) found in hair cells of the cochlea. It is obvious that spermatid PCP is necessary to support the simultaneous development of maximal number of elongating/elongated spermatids to sustain the daily production of > 50 million sperm per adult rat. Studies have shown that the testis indeed expresses multiple PCP proteins necessary to support spermatid PCP. Herein, using physiological and biochemical assays, and morphological analysis, and with the technique of RNA interference (RNAi) to knockdown PCP protein Dishevelled (Dvl) 1 (Dvl1), Dvl2, Dvl3, or Dvl1/2/3, Dvl proteins, in particular Dvl3, it was shown that Dvl3 played a crucial role of support Sertoli cell tight junction (TJ)-permeability barrier function through changes in the organization of actin- and microtubule (MT)-based cytoskeletons. More important, an in vivo knockdown of Dvl1/2/3 in the testis, defects of spermatid polarity were remarkably noted across the seminiferous epithelium, concomitant with defects of spermatid adhesion and spermatid transport, leading to considerably defects in spermatogenesis. More important, Dvl1/2/3 triple knockdown in the testis also impeded the organization of actin- and MT-based cytoskeletons owing to disruptive spatial expression of actin- and MT-regulatory proteins. In summary, PCP Dishevelled proteins, in particular, Dvl3 is a regulator of Sertoli cell blood–testis barrier (BTB)  and also spermatid PCP function through its effects on the actin- and MT-based cytoskeletons in Sertoli cells.
机译:在哺乳动物的睾丸中,例如在大鼠中,极化的伸长/伸长的精子,特别是第17-19步精子在生精上皮平面上的方向排列类似于在耳蜗的毛细胞中发现的平面细胞极性(PCP)。显然,精子五氯苯酚对于支持最大数量的伸长/伸长精子细胞的同时发育是必需的,以维持每只成年大鼠每天> 5000万精子的产量。研究表明,睾丸确实表达了多种支持精子PCP的PCP蛋白。在本文中,使用生理生化分析和形态学分析,并利用RNA干扰(RNAi)技术敲除PCP蛋白Disheveled(Dvl)1(Dvl1),Dvl2,Dvl3或Dvl1 / 2/3,Dvl蛋白,特别是Dvl3,研究表明Dvl3通过基于肌动蛋白和微管(MT)的细胞骨架组织的变化,在支持支持细胞紧密连接(TJ)-通透性屏障功能中起着至关重要的作用。更重要的是,Dvl1 / 2/3的体内敲除,精子上皮细胞上明显注意到精子极性的缺陷,同时伴有精子粘附和精子转运的缺陷,导致精子发生的明显缺陷。更重要的是,由于肌动蛋白和MT调节蛋白的空间表达受到破坏,睾丸中的Dvl1 / 2/3三联体敲除也阻碍了基于肌动蛋白和MT的细胞骨架的组织。总之,PCP杂散蛋白特别是Dvl3是Sertoli细胞血睾丸屏障(BTB)的调节剂,并且精子PCP通过其对Sertoli细胞中基于肌动蛋白和MT的细胞骨架的作用而发挥功能。

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