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拟南芥非共生血红蛋白中的配体迁移和结合。

Ligand migration and binding in nonsymbiotic hemoglobins of Arabidopsis thaliana.

机构信息

Institute of Applied Physics and Center for Functional Nanostructures, Karlsruhe Institute of Technology, 76128 Karlsruhe, Germany.

出版信息

Biochemistry. 2010 Sep 7;49(35):7448-58. doi: 10.1021/bi100768g.

Abstract

We have studied carbon monoxide (CO) migration and binding in the nonsymbiotic hemoglobins AHb1 and AHb2 of Arabidopsis thaliana using Fourier transform infrared (FTIR) spectroscopy combined with temperature derivative spectroscopy (TDS) at cryogenic temperatures. Both proteins have similar amino acid sequences but display pronounced differences in ligand binding properties, at both physiological and cryogenic temperatures. Near neutral pH, the distal HisE7 side chain is close to the heme-bound ligand in the majority of AHb1-CO molecules, as indicated by a low CO stretching frequency at 1921 cm(-1). In this fraction, two CO docking sites can be populated, the primary site B and the secondary site C. When the pH is lowered, a high-frequency stretching band at approximately 1964 cm(-1) grows at the expense of the low-frequency band, indicating that HisE7 protonates and, concomitantly, moves away from the bound ligand. Geminate rebinding barriers are markedly different for the two conformations, and docking site C is not accessible in the low-pH conformation. Rebinding of NO ligands was observed only from site B of AHb1, regardless of conformation. In AHb2, the HisE7 side chain is removed from the bound ligand; rebinding barriers are low, and CO molecules can populate only primary docking site B. These results are interpreted in terms of differences in the active site structures and physiological functions.

摘要

我们使用傅里叶变换红外(FTIR)光谱结合低温下的温度导数光谱(TDS)研究了拟南芥非共生血红蛋白 AHb1 和 AHb2 中的一氧化碳(CO)迁移和结合。这两种蛋白质具有相似的氨基酸序列,但在配体结合特性上存在明显差异,无论是在生理温度还是低温下都是如此。在近中性 pH 值下,大多数 AHb1-CO 分子中,远端 HisE7 侧链靠近与血红素结合的配体,这表现在 1921 cm(-1)处 CO 伸缩频率较低。在这个部分中,可以填充两个 CO 对接位点,主要位点 B 和次要位点 C。当 pH 值降低时,大约 1964 cm(-1)处的高频伸缩带会以低频带为代价增加,表明 HisE7 质子化并同时远离结合的配体。两种构象的孪生再结合势垒明显不同,并且在低 pH 值构象中不可访问对接位点 C。无论构象如何,仅从 AHb1 的位点 B 观察到 NO 配体的再结合。在 AHb2 中,HisE7 侧链从结合的配体上移开;再结合势垒较低,CO 分子只能填充主要的对接位点 B。这些结果可以根据活性位点结构和生理功能的差异来解释。

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