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Characterization of the interaction between protein Snu13p/15.5K and the Rsa1p/NUFIP factor and demonstration of its functional importance for snoRNP assembly

机译:蛋白质Snu13p / 15.5K与Rsa1p / NUFIP因子之间相互作用的表征以及其对snoRNP组装的功能重要性的证明

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摘要

The yeast Snu13p protein and its 15.5K human homolog both bind U4 snRNA and box C/D snoRNAs. They also bind the Rsa1p/NUFIP assembly factor, proposed to scaffold immature snoRNPs and to recruit the Hsp90-R2TP chaperone complex. However, the nature of the Snu13p/15.5K-Rsa1p/NUFIP interaction and its exact role in snoRNP assembly remained to be elucidated. By using biophysical, molecular and imaging approaches, here, we identify residues needed for Snu13p/15.5K-Rsa1p/NUFIP interaction. By NMR structure determination and docking approaches, we built a 3D model of the Snup13p-Rsa1p interface, suggesting that residues R-249, R-246 and K-250 in Rsa1p and E-72 and D-73 in Snu13p form a network of electrostatic interactions shielded from the solvent by hydrophobic residues from both proteins and that residue W-253 of Rsa1p is inserted in a hydrophobic cavity of Snu13p. Individual mutations of residues in yeast demonstrate the functional importance of the predicted interactions for both cell growth and snoRNP formation. Using archaeal box C/D sRNP 3D structures as templates, the association of Snu13p with Rsa1p is predicted to be exclusive of interactions in active snoRNPs. Rsa1p and NUFIP may thus prevent premature activity of pre-snoRNPs, and their removal may be a key step for active snoRNP production.
机译:酵母Snu13p蛋白及其15.5K人类同源物均结合U4 snRNA和盒C / D snoRNA。它们还结合了Rsa1p / NUFIP装配因子,被提议用于支架未成熟的snoRNPs和募集Hsp90-R2TP分子伴侣。但是,Snu13p / 15.5K-Rsa1p / NUFIP相互作用的性质及其在snoRNP组装中的确切作用仍有待阐明。通过使用生物物理,分子和成像方法,在这里,我们确定了Snu13p / 15.5K-Rsa1p / NUFIP相互作用所需的残基。通过NMR结构确定和对接方法,我们建立了Snup13p-Rsa1p界面的3D模型,表明Rsa1p中的残基R-249,R-246和K-250和Snu13p中的E-72和D-73形成了一个静电相互作用被两种蛋白的疏水残基与溶剂屏蔽,Rsa1p的W-253残基被插入Snu13p的疏水腔中。酵母中残基的个别突变证明了预期相互作用对细胞生长和snoRNP形成的功能重要性。使用古细菌盒C / D sRNP 3D结构作为模板,预计Snu13p与Rsa1p的关联将排除活跃snoRNP中的相互作用。因此,Rsa1p和NUFIP可能会阻止pre-snoRNP的过早活性,而将其去除可能是活跃snoRNP产生的关键步骤。

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