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组氨酸 310 在黄萤荧光素酶 pH 值和金属敏感性中的作用及其对其颜色调谐性质的改善。

Role of Histidine 310 in Amydetes vivianii firefly luciferase pH and metal sensitivities and improvement of its color tuning properties.

机构信息

Graduate Program of Biotechnology, Federal University of São Carlos (UFSCar), São Carlos, São Paulo, Brazil.

Department of Biological Chemistry, The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, 9190401, Jerusalem, Israel.

出版信息

Photochem Photobiol Sci. 2024 May;23(5):997-1010. doi: 10.1007/s43630-024-00570-1. Epub 2024 May 1.

Abstract

Firefly luciferases emit yellow-green light and are pH-sensitive, changing the bioluminescence color to red in the presence of heavy metals, acidic pH and high temperatures. These pH and metal-sensitivities have been recently harnessed for intracellular pH indication and toxic metal biosensing. However, whereas the structure of the pH sensor and the metal binding site, which consists mainly of two salt bridges that close the active site (E311/R337 and H310/E354), has been identified, the specific role of residue H310 in pH and metal sensing is still under debate. The Amydetes vivianii firefly luciferase has one of the lowest pH sensitivities among the group of pH-sensitive firefly luciferases, displaying high bioluminescent activity and special spectral selectivity for cadmium and mercury, which makes it a promising analytical reagent. Using site-directed mutagenesis, we have investigated in detail the role of residue H310 on pH and metal sensitivity in this luciferase. Negatively charged residues at position 310 increase the pH sensitivity and metal sensitivity; H310G considerably increases the size of the cavity, severely impacting the activity, H310R closes the cavity, and H310F considerably decreases both pH and metal sensitivities. However, no substitution completely abolished pH and metal sensitivities. The results indicate that the presence of negatively charged and basic side chains at position 310 is important for pH sensitivity and metals coordination, but not essential, indicating that the remaining side chains of E311 and E354 may still coordinate some metals in this site. Furthermore, a metal binding site search predicted that H310 mutations decrease the affinity mainly for Zn, Ni and Hg but less for Cd, and revealed the possible existence of additional binding sites for Zn, Ni and Hg.

摘要

萤火虫荧光素酶发出黄绿色的光,对 pH 值敏感,在重金属、酸性 pH 值和高温存在下,生物发光颜色变为红色。这些对 pH 值和金属的敏感性最近已被用于细胞内 pH 值指示和有毒金属生物传感。然而,尽管已经确定了 pH 传感器的结构和金属结合位点的结构,该结构主要由两个盐桥组成,它们关闭了活性位点(E311/R337 和 H310/E354),但残基 H310 在 pH 值和金属感应中的具体作用仍存在争议。Amydetes vivianii 萤火虫荧光素酶是对 pH 值敏感的萤火虫荧光素酶组中 pH 值敏感性最低的酶之一,它具有高生物发光活性和对镉和汞的特殊光谱选择性,这使其成为一种很有前途的分析试剂。通过定点突变,我们详细研究了该荧光素酶中残基 H310 对 pH 值和金属敏感性的作用。第 310 位带负电荷的残基增加了 pH 值敏感性和金属敏感性;H310G 极大地增加了空腔的大小,严重影响了活性;H310R 关闭了空腔;H310F 极大地降低了 pH 值和金属敏感性。然而,没有任何取代完全消除了 pH 值和金属敏感性。结果表明,第 310 位带负电荷和碱性侧链的存在对 pH 值敏感性和金属配位很重要,但不是必需的,这表明 E311 和 E354 的剩余侧链可能仍然在该位点配位一些金属。此外,金属结合位点搜索预测,H310 突变主要降低了 Zn、Ni 和 Hg 的亲和力,但对 Cd 的亲和力降低较少,并揭示了可能存在额外的 Zn、Ni 和 Hg 结合位点。

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