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一种新颖的二对二α-螺旋夹心折叠是截短血红蛋白家族的特征。

A novel two-over-two alpha-helical sandwich fold is characteristic of the truncated hemoglobin family.

作者信息

Pesce A, Couture M, Dewilde S, Guertin M, Yamauchi K, Ascenzi P, Moens L, Bolognesi M

机构信息

Department of Physics - INFM and Advanced Biotechnology Center - IST, University of Genova, Largo Rosanna Benzi 10, 16132 Genova, Italy.

出版信息

EMBO J. 2000 Jun 1;19(11):2424-34. doi: 10.1093/emboj/19.11.2424.

Abstract

Small hemoproteins displaying amino acid sequences 20-40 residues shorter than (non-)vertebrate hemoglobins (Hbs) have recently been identified in several pathogenic and non-pathogenic unicellular organisms, and named 'truncated hemoglobins' (trHbs). They have been proposed to be involved not only in oxygen transport but also in other biological functions, such as protection against reactive nitrogen species, photosynthesis or to act as terminal oxidases. Crystal structures of trHbs from the ciliated protozoan Paramecium caudatum and the green unicellular alga Chlamydomonas eugametos show that the tertiary structure of both proteins is based on a 'two-over-two' alpha-helical sandwich, reflecting an unprecedented editing of the classical 'three-over-three' alpha-helical globin fold. Based on specific Gly-Gly motifs the tertiary structure accommodates the deletion of the N-terminal A-helix and replacement of the crucial heme-binding F-helix with an extended polypeptide loop. Additionally, concerted structural modifications allow burying of the heme group and define the distal site, which hosts a TyrB10, GlnE7 residue pair. A set of structural and amino acid sequence consensus rules for stabilizing the fold and the bound heme in the trHbs homology subfamily is deduced.

摘要

最近在几种致病和非致病单细胞生物中发现了一些小型血红素蛋白,其氨基酸序列比(非)脊椎动物血红蛋白(Hb)短20 - 40个残基,并被命名为“截短型血红蛋白”(trHb)。它们不仅被认为参与氧气运输,还参与其他生物学功能,如抵抗活性氮物质、光合作用或作为末端氧化酶。来自纤毛原生动物尾草履虫和绿色单细胞藻类衣藻的trHb晶体结构表明,这两种蛋白质的三级结构都基于“二乘二”的α - 螺旋三明治结构,反映了对经典的“三乘三”α - 螺旋球蛋白折叠结构前所未有的编辑。基于特定的甘氨酸 - 甘氨酸基序,三级结构容纳了N端A螺旋的缺失以及关键的血红素结合F螺旋被一个延伸的多肽环所取代。此外,协同的结构修饰使得血红素基团得以埋藏并确定了远端位点,该位点包含一个TyrB10、GlnE7残基对。推导了一组用于稳定trHb同源亚家族中折叠结构和结合血红素的结构和氨基酸序列共识规则。

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