...
首页> 外文期刊>Life >On the Contribution of Protein Spatial Organization to the Physicochemical Interconnection between Proteins and Their Cognate mRNAs
【24h】

On the Contribution of Protein Spatial Organization to the Physicochemical Interconnection between Proteins and Their Cognate mRNAs

机译:蛋白质空间组织对蛋白质与其同源mRNA物理化学相互联系的贡献

获取原文
           

摘要

Early-stage evolutionary development of the universal genetic code remains a fundamental, open problem. One of the possible scenarios suggests that the code evolved in response to direct interactions between peptides and RNA oligonucleotides in the primordial environment. Recently, we have revealed a strong matching between base-binding preferences of modern protein sequences and the composition of their cognate mRNA coding sequences. These results point directly at the physicochemical foundation behind the code’s origin, but also support the possibility of direct complementary interactions between proteins and their cognate mRNAs, especially if the two are unstructured. Here, we analyze molecular-surface mapping of knowledge-based amino-aciducleobase interaction preferences for a set of complete, high-resolution protein structures and show that the connection between the two biopolymers could remain relevant even for structured, folded proteins. Specifically, protein surface loops are strongly enriched in residues with a high binding propensity for guanine and cytosine, while adenine- and uracil-preferring residues are uniformly distributed throughout protein structures. Moreover, compositional complementarity of cognate protein and mRNA sequences remains strong even after weighting protein sequence profiles by residue solvent exposure. Our results support the possibility that protein/mRNA sequence complementarity may also translate to cognate interactions between structured biopolymers.
机译:通用遗传密码的早期进化发展仍然是一个基本的开放性问题。一种可能的情况表明,该密码是在原始环境中响应肽和RNA寡核苷酸之间直接相互作用而进化的。最近,我们揭示了现代蛋白质序列的碱基结合偏好与其同源mRNA编码序列组成之间的强匹配。这些结果直接指出了代码起源背后的物理化学基础,但也支持蛋白质与其同源mRNA之间直接互补相互作用的可能性,特别是如果两者是非结构化的。在这里,我们分析了一组完整的高分辨率蛋白质结构的基于知识的氨基酸/核碱基相互作用偏好的分子表面映射,并显示了两种生物聚合物之间的连接即使对于结构化,折叠的蛋白质也可能仍然相关。具体而言,蛋白质表面环富含对鸟嘌呤和胞嘧啶具有高结合倾向的残基,而优先于腺嘌呤和尿嘧啶的残基均匀分布在整个蛋白质结构中。此外,即使在通过残留溶剂暴露对蛋白质序列图进行加权后,同源蛋白质和mRNA序列的组成互补性仍然很强。我们的结果支持蛋白质/ mRNA序列互补性也可能转化为结构化生物聚合物之间同源相互作用的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号