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比较分析鼠源和人源 S100A7 的物理特性:深入了解为何锌离子抢夺由人源 S100A7 介导而非鼠源 S100A7。

Comparative analysis of the physical properties of murine and human S100A7: Insight into why zinc piracy is mediated by human but not murine S100A7.

机构信息

Departments of Biochemistry and Chemistry, and Center for Structural Biology, Vanderbilt University, Nashville, Tennessee, USA.

Departments of Biochemistry and Chemistry, and Center for Structural Biology, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

J Biol Chem. 2023 Nov;299(11):105292. doi: 10.1016/j.jbc.2023.105292. Epub 2023 Sep 26.

Abstract

S100 proteins are a subfamily of EF-hand calcium-binding proteins found primarily in vertebrate animals. They are distinguished by binding of transition metals and functioning in both the intracellular and extracellular milieu. S100A7 functions in the protection of the skin and mucous membranes and is a biomarker in inflammatory skin disease. A recent study of Neisseria gonorrhoeae infection revealed that human but not murine S100A7 could be used to evade host nutritional immunity. To understand the molecular basis for this difference, we carried out a comparative analysis of the physical and structural properties of human and murine S100A7. The X-ray crystal structure of Ca-loaded mouse S100A7 (mS100A7) was determined to 1.69 Å resolution, and Ca-induced conformational changes were assessed by NMR. Unlike human S100A7 (hS100A7), which exhibits conformational changes in response to binding of Ca, no significant changes in mS100A7 were detected. Dynamic light scattering, circular dichroism, and a competition chelator assay were used to compare the Zn affinity and the effects of ion binding on mS100A7 versus hS100A7. Alignment of their sequences revealed a substantial difference in the C-terminal region, which is an important mediator of protein-protein interactions, suggesting a rationale for the specificity of N. gonorrhoeae for hS100A7. These data, along with more detailed analysis of S100A7 sequence conservation across different species, support the proposal that, although hS100A7 is highly conserved in many mammals, the murine protein is a distinct ortholog. Our results highlight the potential limitations of using mouse models for studying bacterial infections in humans.

摘要

S100 蛋白是 EF 手钙结合蛋白家族的一个亚家族,主要存在于脊椎动物中。它们的特点是结合过渡金属并在细胞内和细胞外环境中发挥作用。S100A7 可在皮肤和黏膜的保护中发挥作用,并作为炎症性皮肤病的生物标志物。最近对淋病奈瑟菌感染的研究表明,人类而非鼠类的 S100A7 可用于逃避宿主营养免疫。为了了解这种差异的分子基础,我们对人源和鼠源 S100A7 的物理和结构特性进行了比较分析。用 X 射线晶体学解析了负载 Ca 的鼠源 S100A7(mS100A7)的晶体结构,分辨率为 1.69Å,并通过 NMR 评估了 Ca 诱导的构象变化。与响应 Ca 结合而发生构象变化的人源 S100A7(hS100A7)不同,mS100A7 没有检测到明显的变化。动态光散射、圆二色性和竞争螯合剂测定用于比较 mS100A7 与 hS100A7 对 Zn 的亲和力和离子结合对其的影响。它们序列的比对揭示了 C 末端区域的显著差异,该区域是蛋白质-蛋白质相互作用的重要介质,这表明淋病奈瑟菌对 hS100A7 的特异性具有合理依据。这些数据,以及对不同物种 S100A7 序列保守性的更详细分析,支持这样的观点,即尽管 hS100A7 在许多哺乳动物中高度保守,但鼠源蛋白是一个截然不同的直系同源物。我们的研究结果强调了在研究人类细菌感染时使用小鼠模型的潜在局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/876b/10598741/c85ed1f41f8b/gr1.jpg

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