首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Par3/Par6 polarity complex coordinates apical ectoplasmic specialization and blood–testis barrier restructuring during spermatogenesis
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Par3/Par6 polarity complex coordinates apical ectoplasmic specialization and blood–testis barrier restructuring during spermatogenesis

机译:Par3 / Par6极性复合体协调精子发生过程中根尖的胞浆专化和血睾丸屏障重构

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摘要

The Par3/Par6/aPKC and the CRB3/Pals1/PATJ polarity complexes are involved in regulating apical ectoplasmic specialization (ES) and blood–testis barrier (BTB) restructuring in the testis. Par6 was a component of the apical ES and the BTB. However, its level was considerably diminished at both sites at stage VIII of the cycle. Par6 also formed a stable complex with Pals1 and JAM-C (a component of the apical ES) in normal testes. When rats were treated with adjudin to induce apical ES restructuring without compromising the BTB, Par6 staining virtually disappeared at the apical ES in misaligned spermatids before their depletion. Additionally, the Par6/Pals1 complex became tightly associated with Src kinase, rendering a loss of association of the Par6/Pals1 complex with JAM-C, thereby destabilizing apical ES to facilitate spermatid loss. Primary Sertoli cell cultures with established functional BTB, but without apical ES, were next used to assess the Par6-based complex on BTB dynamics. When either Par6 or Par3 was knocked down by RNAi in Sertoli cell epithelium, a significant loss of the corresponding protein by ≈60% in cells vs. controls was detected, alongside with a decline in aPKC after Par6, but not Par3, knockdown. This Par3 or Par6 knockdown also led to a transient loss of selected BTB proteins at the cell–cell interface, thereby compromising the BTB integrity. These findings illustrate that the Par6/Par3-based polarity complex likely coordinates the events of apical ES and BTB restructuring that take place concurrently at the opposing ends of adjacent Sertoli cells in the seminiferous epithelium during spermatogenesis.
机译:Par3 / Par6 / aPKC和CRB3 / Pals1 / PATJ极性复合物参与调节睾丸的根尖胞浆特化(ES)和血-睾丸屏障(BTB)重组。 Par6是根尖ES和BTB的组成部分。但是,在周期的第八阶段,这两个地点的水平都大大降低了。在正常睾丸中,Par6还与Pals1和JAM-C(顶端ES的组成部分)形成了稳定的复合物。当用adjudin处理大鼠以诱导其根尖的ES重组而不损害BTB时,Par6染色在失精的精子细胞的根尖ES上几乎消失了。另外,Par6 / Pals1复合物与Src激酶紧密结合,导致Par6 / Pals1复合物与JAM-C的结合丧失,从而使根尖ES不稳定从而促进精子的丢失。具有功能性BTB但没有根尖ES的主要Sertoli细胞培养物接下来用于评估BTB动力学的基于Par6的复合物。当Par6或Par3在Sertoli细胞上皮细胞中被RNAi击倒时,与对照组相比,在细胞中与对照相比,相应蛋白质的蛋白质损失显着减少了约60%,并且aPKC下降,但在Par6击倒后未检测到aPKC下降。这种Par3或Par6敲低还导致细胞间界面上所选BTB蛋白的瞬时损失,从而损害了BTB的完整性。这些发现表明,基于Par6 / Par3的极性复合物可能会协调在生精过程中在生精上皮中相邻Sertoli细胞的相对末端同时发生的根尖ES和BTB重组事件。

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