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首页> 外文期刊>Nucleic acids research >Two‐hybrid Mpp10p interaction‐defective Imp4 proteins are not interaction defective in vivo but do confer specific pre‐rRNA processing defects in Saccharomyces cerevisiae
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Two‐hybrid Mpp10p interaction‐defective Imp4 proteins are not interaction defective in vivo but do confer specific pre‐rRNA processing defects in Saccharomyces cerevisiae

机译:两杂交Mpp10p相互作用缺陷的Imp4蛋白在体内不是相互作用缺陷,但确实在酿酒酵母中具有特定的rRNA前加工缺陷。

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摘要

The SSU processome is a large, evolutionarily conserved ribonucleoprotein (RNP), consisting of the U3 snoRNA and at least 28 protein components, that is required for biogenesis of the 18S rRNA. We tested the function of one protein–protein interaction in the SSU processome, Mpp10p–Imp4p, in ribosome biogenesis. Exploiting the reverse two‐hybrid system, we screened for mutated Imp4 proteins that were conditionally defective for interaction with Mpp10p. Three different imp4 sequences were isolated that: (i) conferred conditional growth in the two‐hybrid strain; (ii) complemented the disrupted imp4; (iii) conferred conditional growth in the context of their normal cellular function; and (iv) resulted in defective pre‐rRNA processing at the non‐permissive temperatures. Domain swapping revealed that mutations that conferred cold sensitivity resided in the N‐terminal coiled‐coil domain while mutations in the C‐terminus conferred temperature sensitivity. Surprisingly, the mutated Imp4 proteins were not measurably defective for interaction with Mpp10p in the context of the SSU processome. This suggests that other members of the complex may contribute to maintaining the Mpp10p–Imp4p interaction in this large RNP. Since protein–protein interactions are critical for many different aspects of cellular metabolism, our work has implications for the study of other large protein complexes.
机译:SSU加工组是一种大的,进化上保守的核糖核蛋白(RNP),由U3 snoRNA和至少28个蛋白质成分组成,这是18S rRNA的生物发生所必需的。我们在核糖体生物发生中测试了SSU过程组中一种蛋白质与蛋白质相互作用的功能Mpp10p–Imp4p。利用反向双杂交系统,我们筛选了有条件缺陷的与Mpp10p相互作用的突变Imp4蛋白。分离出三个不同的imp4序列:(i)赋予双杂交品系有条件的生长; (ii)补充了受干扰的imp4; (iii)在正常细胞功能的情况下赋予条件性生长; (iv)在不允许的温度下导致pre-rRNA加工过程有缺陷。域交换显示,赋予冷敏感性的突变位于N末端卷曲螺旋结构域,而C末端的突变赋予温度敏感性。出乎意料的是,在SSU过程组中,突变的Imp4蛋白与Mpp10p的相互作用没有明显的缺陷。这表明复合物的其他成员可能有助于维持这个大RNP中的Mpp10p–Imp4p相互作用。由于蛋白质之间的相互作用对于细胞代谢的许多不同方面至关重要,因此我们的工作对其他大型蛋白质复合物的研究具有重要意义。

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