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Pelota interacts with HAX1, EIF3G and SRPX and the resulting protein complexes are associated with the actin cytoskeleton

机译:Pelota与HAX1,EIF3G和SRPX相互作用,产生的蛋白质复合物与肌动蛋白细胞骨架相关

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Background Pelota (PELO) is an evolutionary conserved protein, which has been reported to be involved in the regulation of cell proliferation and stem cell self-renewal. Recent studies revealed the essential role of PELO in the No-Go mRNA decay, by which mRNA with translational stall are endonucleotically cleaved and degraded. Further, PELO-deficient mice die early during gastrulation due to defects in cell proliferation and/or differentiation. Results We show here that PELO is associated with actin microfilaments of mammalian cells. Overexpression of human PELO in Hep2G cells had prominent effect on cell growth, cytoskeleton organization and cell spreading. To find proteins interacting with PELO, full-length human PELO cDNA was used as a bait in a yeast two-hybrid screening assay. Partial sequences of HAX1, EIF3G and SRPX protein were identified as PELO-interacting partners from the screening. The interactions between PELO and HAX1, EIF3G and SRPX were confirmed in vitro by GST pull-down assays and in vivo by co-immunoprecipitation. Furthermore, the PELO interaction domain was mapped to residues 268-385 containing the c-terminal and acidic tail domain. By bimolecular fluorescence complementation assay (BiFC), we found that protein complexes resulting from the interactions between PELO and either HAX1, EIF3G or SRPX were mainly localized to cytoskeletal filaments. Conclusion We could show that PELO is subcellularly localized at the actin cytoskeleton, interacts with HAX1, EIF3G and SRPX proteins and that this interaction occurs at the cytoskeleton. Binding of PELO to cytoskeleton-associated proteins may facilitate PELO to detect and degrade aberrant mRNAs, at which the ribosome is stalled during translation.
机译:背景Pelota(PELO)是一种进化保守蛋白,据报道与细胞增殖和干细胞自我更新的调节有关。最近的研究揭示了PELO在No-Go mRNA衰变中的重要作用,通过该过程,具有翻译停顿的mRNA会被核酸内切并降解。此外,由于细胞增殖和/或分化的缺陷,PELO缺陷型小鼠在胃造瘘期间较早死亡。结果我们在这里显示PELO与哺乳动物细胞的肌动蛋白微丝有关。人PELO在Hep2G细胞中的过表达对细胞生长,细胞骨架组织和细胞扩散具有显着影响。为了发现与PELO相互作用的蛋白质,全长人PELO cDNA被用作酵母双杂交筛选测定的诱饵。从筛选中鉴定出HAX1,EIF3G和SRPX蛋白的部分序列为PELO相互作用伴侣。 PELO与HAX1,EIF3G和SRPX之间的相互作用在体外通过GST下拉测定法得以证实,在体内通过共免疫沉淀法得以证实。此外,将PELO相互作用结构域定位到含有c末端和酸性尾结构域的残基268-385。通过双分子荧光互补测定法(BiFC),我们发现PELO与HAX1,EIF3G或SRPX之间相互作用产生的蛋白复合物主要定位于细胞骨架丝。结论我们可以证明PELO位于肌动蛋白细胞骨架的亚细胞区域,与HAX1,EIF3G和SRPX蛋白相互作用,并且这种相互作用发生在细胞骨架上。 PELO与细胞骨架相关蛋白的结合可以促进PELO检测并降解异常的mRNA,在翻译过程中核糖体停滞在该mRNA上。

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