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来自地狱之门的球蛋白-I 展示了一种独特的温度独立的 pH 感应机制,利用了脂质诱导的构象变化。

Hell's Gate Globin-I from Displays a Unique Temperature-Independent pH Sensing Mechanism Utililized a Lipid-Induced Conformational Change.

机构信息

School of Biological Sciences, University of Essex, Wivenhoe Park Colchester, Essex CO4 3SQ, UK.

出版信息

Int J Mol Sci. 2024 Jun 20;25(12):6794. doi: 10.3390/ijms25126794.

Abstract

Hell's Gate globin-I (HGb-I) is a thermally stable globin from the aerobic methanotroph . Here we report that HGb-I interacts with lipids stoichiometrically to induce structural changes in the heme pocket, changing the heme iron distal ligation coordination from hexacoordinate to pentacoordinate. Such changes in heme geometry have only been previously reported for cytochrome c and cytoglobin, linked to apoptosis regulation and enhanced lipid peroxidation activity, respectively. However, unlike cytoglobin and cytochrome c, the heme iron of HGb-I is altered by lipids in ferrous as well as ferric oxidation states. The apparent affinity for lipids in this thermally stable globin is highly pH-dependent but essentially temperature-independent within the range of 20-60 °C. We propose a mechanism to explain these observations, in which lipid binding and stability of the distal endogenous ligand are juxtaposed as a function of temperature. Additionally, we propose that these coupled equilibria may constitute a mechanism through which this acidophilic thermophile senses the pH of its environment.

摘要

海氏血红蛋白-I(HGb-I)是一种来自需氧产甲烷菌的热稳定球蛋白。在这里,我们报告 HGb-I 与脂质按化学计量比相互作用,诱导血红素口袋中的结构变化,将血红素铁的远端配位从六配位变为五配位。这种血红素几何形状的变化以前仅在细胞色素 c 和细胞球蛋白中报道过,分别与细胞凋亡调节和增强的脂质过氧化活性有关。然而,与细胞球蛋白和细胞色素 c 不同,HGb-I 的血红素铁在亚铁和三价氧化态下均被脂质改变。这种热稳定球蛋白对脂质的表观亲和力高度依赖于 pH,但在 20-60°C 的范围内基本与温度无关。我们提出了一种解释这些观察结果的机制,其中脂质结合和远端内源性配体的稳定性作为温度的函数并列。此外,我们提出这些偶联平衡可能构成这种嗜酸嗜热生物感知其环境 pH 的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee64/11203436/bf1c3feb7ded/ijms-25-06794-g001.jpg

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