Daughdrill Gary W, Narayanaswami Pranesh, Gilmore Sara H, Belczyk Agniezka, Brown Celeste J
Department of Microbiology, Molecular Biology, and Biochemistry, University of Idaho, Moscow, ID 83844-3052, USA.
J Mol Evol. 2007 Sep;65(3):277-88. doi: 10.1007/s00239-007-9011-2. Epub 2007 Aug 25.
Proteins or regions of proteins that do not form compact globular structures are classified as intrinsically unstructured proteins (IUPs). IUPs are common in nature and have essential molecular functions, but even a limited understanding of the evolution of their dynamic behavior is lacking. The primary objective of this work was to test the evolutionary conservation of dynamic behavior for a particular class of IUPs that form intrinsically unstructured linker domains (IULD) that tether flanking folded domains. This objective was accomplished by measuring the backbone flexibility of several IULD homologues using nuclear magnetic resonance (NMR) spectroscopy. The backbone flexibility of five IULDs, representing three kingdoms, was measured and analyzed. Two IULDs from animals, one IULD from fungi, and two IULDs from plants showed similar levels of backbone flexibility that were consistent with the absence of a compact globular structure. In contrast, the amino acid sequences of the IULDs from these three taxa showed no significant similarity. To investigate how the dynamic behavior of the IULDs could be conserved in the absence of detectable sequence conservation, evolutionary rate studies were performed on a set of nine mammalian IULDs. The results of this analysis showed that many sites in the IULD are evolving neutrally, suggesting that dynamic behavior can be maintained in the absence of natural selection. This work represents the first experimental test of the evolutionary conservation of dynamic behavior and demonstrates that amino acid sequence conservation is not required for the conservation of dynamic behavior and presumably molecular function.
未形成紧密球状结构的蛋白质或蛋白质区域被归类为内在无序蛋白质(IUPs)。IUPs在自然界中很常见且具有重要的分子功能,但目前对其动态行为的进化了解甚至还很有限。这项工作的主要目标是测试一类特定的IUPs的动态行为的进化保守性,这类IUPs形成内在无序的连接域(IULD),连接侧翼的折叠域。这一目标是通过使用核磁共振(NMR)光谱测量几种IULD同源物的主链灵活性来实现的。测量并分析了代表三个界的五个IULD的主链灵活性。来自动物的两个IULD、来自真菌的一个IULD和来自植物的两个IULD表现出相似水平的主链灵活性,这与缺乏紧密球状结构一致。相比之下,这三个分类群的IULD的氨基酸序列没有显著的相似性。为了研究在没有可检测到的序列保守性的情况下IULD的动态行为如何得以保守,对一组九个哺乳动物IULD进行了进化速率研究。该分析结果表明,IULD中的许多位点正在中性进化,这表明在没有自然选择的情况下动态行为可以维持。这项工作代表了对动态行为进化保守性的首次实验测试,并证明动态行为的保守以及推测的分子功能并不需要氨基酸序列的保守。