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首页> 外文期刊>The Biochemical Journal >Phosphorylation of the Aspergillus oryzae Woronin body protein, AoHex1, by protein kinase C: evidence for its role in the multimerization and proper localization of the Woronin body protein
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Phosphorylation of the Aspergillus oryzae Woronin body protein, AoHex1, by protein kinase C: evidence for its role in the multimerization and proper localization of the Woronin body protein

机译:米曲霉Worroin体蛋白AoHex1被蛋白激酶C磷酸化:证明其在Worroin体蛋白的多聚化和正确定位中的作用

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摘要

Woronin body, a specialized peroxisome, is a unique organelle involved in septal pore sealing and protecting filamentous fungus from excessive cytoplasmic bleeding. We recently characterized the Aohex1 gene encoding the major protein of the Woronin body in the fungus Aspergillus oryzae. Although three-dimensional microscopy revealed plugging of the septal pore by Woronin body, the mechanism of its formation remains unknown. We report here a reduction in the oligomeric forms (dimeric and tetrameric) of AoHex1 upon lambda-phosphatase treatment, which indicated that AoHex1 phosphorylation in vivo facilitates its oligomerization. Concomitant with the presence of a highly conserved predicted PKC (protein kinase C)-phosphorylatable site (Ser(151)), the recombinant AoHex I was phosphorylated by PKC in vitro and the administration of the PKC inhibitors, bisindolylmaleimide I and chelerythrine, resulted in the reduction of the oligomeric forms of AoHex1 in vivo. While spherical dot-like Woronin bodies were visualized by expressing the dsred2-Aohex1 and egfp (enhanced green fluorescent protein)-Aohex1 constructs in A. oryzae, treatment with the PKC inhibitors caused an abnormal localization to ring-like structures. In addition to the reduced phosphorylation of the mutagenized recombinant AoHex 1[S151A] (Ser(151) to alanine substitution) by PKC in vitro, the overexpression of Aohev1 [S151A] as dsred2 fusion against the wild-type background also showed reduction of the oligomeric forms of the endogenous AoHex1 and its perturbed localization to ring-like structures in vivo. In conclusion, the present study implicates the relevance of PKC-dependent phosphorylation of the Woronin body protein, AoHex1, for its multimerization and proper localization.
机译:Woronin体是一种专门的过氧化物酶体,是一种独特的细胞器,可参与隔膜的封闭和保护丝状真菌免受过多的细胞质出血。我们最近表征了Aohex1基因,该基因编码米曲霉真菌中Woronin体的主要蛋白质。尽管三维显微镜显示沃罗宁体堵塞了中隔孔,但其形成机理仍然未知。我们在这里报告了λ-磷酸酶处理后,AoHex1的寡聚形式(二聚体和四聚体)的减少,这表明AoHex1在体内的磷酸化促进了其寡聚化。伴随着高度保守的预测PKC(蛋白激酶C)-磷酸化位点(Ser(151))的存在,重组AoHex I在体外被PKC磷酸化,并施用PKC抑制剂bisindolylmaleimide I和白屈菜红碱减少体内AoHex1的寡聚形式。虽然通过在米曲霉中表达dsred2-Aohex1和egfp(增强型绿色荧光蛋白)-Aohex1构建体可以看到球形的点状Woronin体,但用PKC抑制剂处理会导致环状结构异常定位。除了通过PKC在体外诱变的重组AoHex 1 [S151A](Ser(151)取代为丙氨酸)的磷酸化降低之外,作为dsred2融合体的Aohev1 [S151A]过表达也表明与野生型背景融合。内源性AoHex1的寡聚形式及其在体内扰动到环状结构的位置。综上所述,本研究暗示了卵圆蛋白体蛋白AoHex1的PKC依赖性磷酸化与其多聚化和适当定位的相关性。

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