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High Resolution Crystal Structures of the Cerebratulus lacteus Mini-Hb in the Unligated and Carbomonoxy States

机译:未连接和碳氧状态下的小脑型Mini-Hb的高分辨率晶体结构

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摘要

The nerve tissue mini-hemoglobin from Cerebratulus lacteus (CerHb) displays an essential globin fold hosting a protein matrix tunnel held to allow traffic of small ligands to and from the heme. CerHb heme pocket hosts the distal TyrB10/GlnE7 pair, normally linked to low rates of O2 dissociation and ultra-high O2 affinity. However, CerHb affinity for O2 is similar to that of mammalian myoglobins, due to a dynamic equilibrium between high and low affinity states driven by the ability of ThrE11 to orient the TyrB10 OH group relative to the heme ligand. We present here the high resolution crystal structures of CerHb in the unligated and carbomonoxy states. Although CO binds to the heme with an orientation different from the O2 ligand, the overall binding schemes for CO and O2 are essentially the same, both ligands being stabilized through a network of hydrogen bonds based on TyrB10, GlnE7, and ThrE11. No dramatic protein structural changes are needed to support binding of the ligands, which can freely reach the heme distal site through the apolar tunnel. A lack of main conformational changes between the heme-unligated and -ligated states grants stability to the folded mini-Hb and is a prerequisite for fast ligand diffusion to/from the heme.
机译:来自乳脑(CerHb)的神经组织微型血红蛋白显示出必需的球蛋白折叠,该折叠包含一个蛋白质基质通道,该通道被保留以允许小配体往返于血红素。 CerHb血红素袋容纳TyrB10 / GlnE7远端对,通常与O2解离率低和O2亲和力超高有关。但是,CerHb对O2的亲和力类似于哺乳动物肌球蛋白,这是由于高亲和力状态和低亲和力状态之间的动态平衡,这是由ThrE11相对于血红素配体定向TyrB10 OH基团的能力驱动的。我们在这里介绍未连接和碳酰氧基状态的CerHb的高分辨率晶体结构。尽管CO以不同于O2配体的方向结合到血红素上,但CO和O2的整体结合方案基本相同,两个配体均通过基于TyrB10,GlnE7和ThrE11的氢键网络稳定。不需要显着的蛋白质结构变化来支持配体的结合,可以通过非极性通道自由到达血红素远端。在血红素未结合状态和-血红素结合状态之间缺乏主要构象变化为折叠的mini-Hb赋予了稳定性,并且是快速的配体扩散至血红素/从血红素中扩散的先决条件。

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