首页> 外文期刊>The protein journal >Comparison of the predicted structures of loops in the ras-SOS protein bound to a single ras-p21 protein with the crystallographically determined structures in SOS bound to two ras-p21 proteins.
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Comparison of the predicted structures of loops in the ras-SOS protein bound to a single ras-p21 protein with the crystallographically determined structures in SOS bound to two ras-p21 proteins.

机译:与单个ras-p21蛋白结合的ras-SOS蛋白中环的预测结构与与两个ras-p21蛋白结合的SOS中晶体学确定的结构的比较。

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摘要

We have previously computed the structures of three loops, residues 591-596, 654-675 and 742-751, in the ras-p21 protein-binding domain (residues 568-1044) of the guanine nucleotide-exchange-promoting SOS protein that were crystallographically undefined when one molecule of ras-p21 (unbound to nucleotide) binds to SOS. Based on our computational results, we synthesized three peptides corresponding to sequences of each of these three loops and found that all three peptides strongly inhibit ras-p21 signaling. More recently, a new crystal structure of SOS has been determined in which this protein binds to two molecules of ras-p21, one unbound to GTP and one bound to GTP. In this structure, the 654-675 loop and residues 742-743 and 750-751 are now crystallographically defined. We have superimposed our energy-minimized structure of the ras-binding domain of SOS bound to one molecule of ras-p21 on the X-ray structure for SOS bound to two molecules of ras-p21. We find that, while the two structures are superimposable, there are large deviations of the residues 673 and 676 and 741 and 752, flanking the two loop segments. This suggests that the binding of the extra ras-p21 molecule, which is far from each of the three loops, induces conformational changes in these domains and further supports their role in signal transduction. In spite of these differences, we have superimposed our computed structures for the loop residues on those from the more recent X-ray structure. Our structure for the 654-675 segment is an anti-parallel beta-sheet with a reverse turn at residues 663-665; in the X-ray structure residues 655-662 adopt an alpha-helical conformation; on the other hand, our computed structure for residues 663-675 superimpose on the X-ray structure for these residues. We further find that our computed structures for residues 742-743 and 750-751 are superimposable on the X-ray structure for these residues.
机译:我们之前已经计算了鸟嘌呤核苷酸交换促进SOS蛋白的ras-p21蛋白结合域(残基568-1044)中的三个环,残基591-596、654-675和742-751的结构,分别为一分子ras-p21(未结合核苷酸)与SOS结合时,晶体学上不确定。根据我们的计算结果,我们合成了对应于这三个环中每个环的序列的三个肽,发现这三个肽均强烈抑制ras-p21信号传导。最近,已经确定了一种新的SOS晶体结构,其中该蛋白与ras-p21的两个分子结合,一个不与GTP结合,一个与GTP结合。在这种结构中,现在在晶体学上定义了654-675环和残基742-743和750-751。我们已经将结合一个分子ras-p21分子的SOS的ras结合结构域的能量最小化结构叠加在结合两个ras-p21分子的SOS的X射线结构上。我们发现,虽然两个结构是可重叠的,但是在两个环段的侧翼上残基673和676以及741和752存在较大的偏差。这表明与三个环中的每一个相距较远的额外ras-p21分子的结合均会诱导这些域中的构象变化,并进一步支持其在信号转导中的作用。尽管存在这些差异,我们仍将循环残基的计算结构叠加在来自最新X射线结构的残基上。我们针对654-675片段的结构是反平行的β-折叠,在残基663-665处具有反向转向;在X射线结构中,残基655-662采用α-螺旋构象。另一方面,我们对残基663-675的计算结构在这些残基的X射线结构上重叠。我们进一步发现,我们计算出的残基742-743和750-751的结构在这些残基的X射线结构上是可叠加的。

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