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与昼夜节律相关的神经元PAS结构域蛋白2的分离的血红素结合PAS-B结构域的光谱表征。

Spectroscopic characterization of the isolated heme-bound PAS-B domain of neuronal PAS domain protein 2 associated with circadian rhythms.

作者信息

Koudo Ryoji, Kurokawa Hirofumi, Sato Emiko, Igarashi Jotaro, Uchida Takeshi, Sagami Ikuko, Kitagawa Teizo, Shimizu Toru

机构信息

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai, Japan.

出版信息

FEBS J. 2005 Aug;272(16):4153-62. doi: 10.1111/j.1742-4658.2005.04828.x.

Abstract

Neuronal PAS domain protein 2 (NPAS2) is an important transcription factor associated with circadian rhythms. This protein forms a heterodimer with BMAL1, which binds to the E-box sequence to mediate circadian rhythm-regulated transcription. NPAS2 has two PAS domains with heme-binding sites in the N-terminal portion. In this study, we overexpressed wild-type and His mutants of the PAS-B domain (residues 241-416) of mouse NPAS2 and then purified and characterized the isolated heme-bound proteins. Optical absorption spectra of the wild-type protein showed that the Fe(III), Fe(II) and Fe(II)-CO complexes are 6-co-ordinated low-spin complexes. On the other hand, resonance Raman spectra indicated that both the Fe(III) and Fe(II) complexes contain mixtures of 5-co-ordinated high-spin and 6-co-ordinated low-spin complexes. Based on inverse correlation between nu(Fe-CO) and nu(C-O) of the resonance Raman spectra, it appeared that the axial ligand trans to CO of the heme-bound PAS-B is His. Six His mutants (His266Ala, His289Ala, His300Ala, His302Ala, His329Ala, and His335Ala) were generated, and their optical absorption spectra were compared. The spectrum of the His335Ala mutant indicated that its Fe(III) complex is the 5-co-ordinated high-spin complex, whereas, like the wild-type, the complexes for the five other His mutants were 6-co-ordinated low-spin complexes. Thus, our results suggest that one of the axial ligands of Fe(III) in PAS-B is His335. Also, binding kinetics suggest that heme binding to the PAS-B domain of NPAS2 is relatively weak compared with that of sperm whale myoglobin.

摘要

神经元PAS结构域蛋白2(NPAS2)是一种与昼夜节律相关的重要转录因子。该蛋白与BMAL1形成异二聚体,后者与E-box序列结合以介导昼夜节律调节的转录。NPAS2在N端部分有两个带有血红素结合位点的PAS结构域。在本研究中,我们过表达了小鼠NPAS2的PAS-B结构域(第241 - 416位氨基酸)的野生型和His突变体,然后纯化并表征了分离得到的血红素结合蛋白。野生型蛋白的光吸收光谱表明,Fe(III)、Fe(II)和Fe(II)-CO复合物是六配位的低自旋复合物。另一方面,共振拉曼光谱表明,Fe(III)和Fe(II)复合物都包含五配位高自旋和六配位低自旋复合物的混合物。基于共振拉曼光谱中ν(Fe-CO)与ν(C-O)的反相关关系,似乎与血红素结合的PAS-B中与CO反位的轴向配体是His。产生了六个His突变体(His266Ala、His289Ala、His300Ala、His302Ala、His329Ala和His335Ala),并比较了它们的光吸收光谱。His335Ala突变体的光谱表明其Fe(III)复合物是五配位高自旋复合物,而其他五个His突变体的复合物与野生型一样,是六配位低自旋复合物。因此,我们的结果表明PAS-B中Fe(III)的轴向配体之一是His335。此外,结合动力学表明,与抹香鲸肌红蛋白相比,血红素与NPAS2的PAS-B结构域的结合相对较弱。

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