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共振拉曼光谱揭示的单细胞生物血红蛋白的结构和功能特性。

Structural and functional properties of hemoglobins from unicellular organisms as revealed by resonance Raman spectroscopy.

作者信息

Egawa Tsuyoshi, Yeh Syun-Ru

机构信息

Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

J Inorg Biochem. 2005 Jan;99(1):72-96. doi: 10.1016/j.jinorgbio.2004.10.017.

Abstract

Hemoglobins have been discovered in organisms from virtually all kingdoms. Their presence in unicellular organisms suggests that the gene for hemoglobin is very ancient and that the hemoglobins must have functions other than oxygen transport, in view of the fact that O2 delivery is a diffusion-controlled process in these organisms. Based on sequence alignment, three groups of hemoglobins have been characterized in unicellular organisms. The group-one hemoglobins, termed truncated hemoglobins, consist of proteins with 110-140 amino acid residues and a novel two-over-two alpha-helical sandwich motif. The group-two hemoglobins, termed flavohemoglobins, consist of a hemoglobin domain, with a classical three-over-three alpha-helical sandwich motif, and a flavin-containing reductase domain that is covalently attached to it. The group-three hemoglobins consist of myoglobin-like proteins that have high sequence homology and structural similarity to the hemoglobin domain of flavohemoglobins. In this review, recent resonance Raman studies of each group of these proteins are presented. Their implications are discussed in the context of the structural and functional properties of these novel hemoglobins.

摘要

几乎在所有生物界的生物体中都发现了血红蛋白。它们在单细胞生物中的存在表明,血红蛋白基因非常古老,而且鉴于在这些生物体中氧气输送是一个受扩散控制的过程,血红蛋白必定具有除氧气运输之外的其他功能。基于序列比对,在单细胞生物中已鉴定出三类血红蛋白。第一类血红蛋白,称为截短血红蛋白,由含有110 - 140个氨基酸残基的蛋白质和一种新型的二乘二α - 螺旋夹心基序组成。第二类血红蛋白,称为黄素血红蛋白,由一个具有经典的三乘三α - 螺旋夹心基序的血红蛋白结构域和一个与之共价连接的含黄素还原酶结构域组成。第三类血红蛋白由与黄素血红蛋白的血红蛋白结构域具有高度序列同源性和结构相似性的肌红蛋白样蛋白质组成。在这篇综述中,展示了对这些蛋白质每一类的最新共振拉曼研究。在这些新型血红蛋白的结构和功能特性的背景下讨论了它们的意义。

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