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首页> 外文期刊>Nucleic acids research >Interaction among silkworm ribosomal proteins P1, P2 and P0 required for functional protein binding to the GTPase-associated domain of 28S rRNA
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Interaction among silkworm ribosomal proteins P1, P2 and P0 required for functional protein binding to the GTPase-associated domain of 28S rRNA

机译:功能蛋白与28S rRNA的GTPase相关结构域结合所需的家蚕核糖体蛋白P1,P2和P0之间的相互作用

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Acidic ribosomal phosphoproteins P0, P1 and P2 were isolated in soluble form from silkworm ribosomes and tested for their interactions with each other and with RNA fragments corresponding to the GTPase-associated domain of residues 1030–1127 (Escherichia coli numbering) in silkworm 28S rRNA in vitro. Mixing of P1 and P2 formed the P1–P2 heterodimer, as demonstrated by gel mobility shift and chemical crosslinking. This heterodimer, but neither P1 or P2 alone, tightly bound to P0 and formed a pentameric complex, presumably as P0(P1–P2)2, assumed from its molecular weight derived from sedimentation analysis. Complex formation strongly stimulated binding of P0 to the GTPase-associated RNA domain. The protein complex and eL12 (E.coli L11-type), which cross-bound to the E.coli equivalent RNA domain, were tested for their function by replacing with the E.coli counterparts L10.L7/L12 complex and L11 on the rRNA domain within the 50S subunits. Both P1 and P2, together with P0 and eL12, were required to activate ribosomes in polyphenylalanine synthesis dependent on eucaryotic elongation factors as well as eEF-2-dependent GTPase activity. The results suggest that formation of the P1–P2 heterodimer is required for subsequent formation of the P0(P1–P2)2 complex and its functional rRNA binding in silkworm ribosomes.
机译:从蚕核糖体中以可溶性形式分离了酸性核糖体磷蛋白P0,P1和P2,并测试了它们之间的相互作用以及与蚕28S rRNA中1030-1127位残基的GTPase相关结构域对应的RNA片段的相互作用(大肠杆菌编号)。体外。 P1和P2的混合形成P1-P2异二聚体,如凝胶迁移率变化和化学交联所证明。该异二聚体与P0紧密结合,但不单独与P1或P2结合,形成五聚体,大概是P0(P1-P2) 2 ,这是根据沉降分析得出的分子量推测的。复合物的形成强烈刺激了P0与GTPase相关的RNA结构域的结合。通过与大肠杆菌对应的L10.L7 / L12复合物和L11上的L11取代,测试了与E.coli等效RNA域交叉结合的蛋白质复合物和eL12(大肠杆菌L11型)的功能。 50S亚基内的rRNA结构域。需要P1和P2以及P0和eL12来激活聚苯丙氨酸合成中的核糖体,这取决于真核生物的伸长因子以及eEF-2依赖性GTPase活性。结果表明,P1-P2异二聚体的形成是随后形成P0(P1-P2) 2 复合物及其在蚕核糖体中的功能性rRNA结合所必需的。

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