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Lens Fiber Connexin Turnover and Caspase-3-Mediated Cleavage Are Regulated Alternately by Phosphorylation

机译:晶状体纤维连接蛋白的转换和Caspase-3介导的裂解通过磷酸化来交替调节。

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Lens connexins are phosphorylated in vivo; however, the function and regulation of the phosphorylation remain largely unknown.We have previously identified an in vivo phosphorylation site, Ser364, at the COOH terminus of lens connexin (Cx) Cx45.6 and phosphorylation appears to regulate connexin protein turnover. To assess the specific mechanism of Ser364 phosphorylation in Cx45.6, exogenous wild type and Ser364 mutant Cx45.6 were expressed in primary lens cultures through retroviral infection. Cx45.6 turnover was attenuated primarily by proteasomal inhibitors and to a lesser extent by lysosomal inhibitors. Furthermore, the level of Cx45.6 protein in ubiquitin co-expressed cells was significantly reduced as compared to the cells expressing Cx45.6 alone. Moreover, overexpression of ubiquitin led to a more significant decrease in wild type Cx45.6 than Cx45.6(S364A), a mutant deficient of phosphorylation site at Ser364, although we did not detect any difference in the levels of ubiquitination between wild type and mutant Cx45.6. Interestingly, the mutant mimicking constitutive phosphorylation, Cx45.6(S364D), partially prevented the cleavage of Cx45.6 by caspase-3. Together, our data suggest that phosphorylation of Cx45.6 at Ser364appears to stimulate Cx45.6 turnover primarily through proteasome pathway and this phosphorylation inhibits the cleavage of Cx45.6 by caspase-3. These findings provide further insights into regulatory mechanism of the specific phosphorylation of connexins in the lens.
机译:晶状体连接蛋白在体内被磷酸化;然而,磷酸化的功能和调控仍然是未知的。我们之前已经确定了晶状体连接蛋白(Cx)Cx45.6的COOH末端的体内磷酸化位点Ser364,磷酸化似乎可以调节连接蛋白的代谢。为了评估Cx45.6中Ser364磷酸化的具体机制,通过逆转录病毒感染在原代晶状体培养物中表达了外源野生型和Ser364突变体Cx45.6。 Cx45.6营业额主要被蛋白酶体抑制剂减弱,而溶酶体抑制剂则减弱程度较小。此外,与仅表达Cx45.6的细胞相比,泛素共表达的细胞中Cx45.6蛋白的水平显着降低。此外,泛素的过表达导致野生型Cx45.6的降低比Cx45.6(S364A)(Ser364磷酸化位点缺失的突变体)更显着,尽管我们没有发现野生型和Cx45.6之间的泛素化水平有任何差异。突变体Cx45.6。有趣的是,模仿组成型磷酸化的突变体Cx45.6(S364D),部分阻止了caspase-3对Cx45.6的切割。总之,我们的数据表明,Ser364处Cx45.6的磷酸化似乎主要通过蛋白酶体途径刺激Cx45.6的转换,并且这种磷酸化抑制了caspase-3对Cx45.6的切割。这些发现为晶状体中连接蛋白的特异性磷酸化的调控机制提供了进一步的见解。

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