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Sulfide binding is mediated by zinc ions discovered in the crystal structure of a hydrothermal vent tubeworm hemoglobin

机译:硫化物结合是由在热液喷管虫血红蛋白的晶体结构中发现的锌离子介导的

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摘要

Key to the remarkable ability of vestimentiferan tubeworms to thrive in the harsh conditions of hydrothermal vents are hemoglobins that permit the sequestration and delivery of hydrogen sulfide and oxygen to chemoautotrophic bacteria. Here, we demonstrate that zinc ions, not free cysteine residues, bind sulfide in vestimentiferan hemoglobins. The crystal structure of the C1 hemoglobin from the hydrothermal vent tubeworm Riftia pachyptila has been determined to 3.15 Å and revealed the unexpected presence of 12 tightly bound Zn2+ ions near the threefold axes of this D3 symmetric hollow sphere. Chelation experiments on R. pachyptila whole-coelomic fluid and purified hemoglobins reveal a role for Zn2+ ions in sulfide binding. Free cysteine residues, previously proposed as sulfide-binding sites in vestimentiferan hemoglobins, are found buried in surprisingly hydrophobic pockets below the surface of the R. pachyptila C1 molecule, suggesting that access of these residues to environmental sulfide is restricted. Attempts to reduce the sulfide-binding capacities of R. pachyptila hemoglobins by addition of a thiol inhibitor were also unsuccessful. These findings challenge the currently accepted paradigm of annelid hemoglobin evolution and adaptation to reducing environments.
机译:在热液喷口的恶劣条件下,前卫夜蛾的蠕虫ability壮成长的关键在于血红蛋白,它可以将硫化氢和氧气隔离并输送给化学自养细菌。在这里,我们证明锌离子,而不是游离的半胱氨酸残基,会结合前卫植物血红蛋白中的硫化物。经测定,热液喷管夜蛾Riftia pachyptila的C1血红蛋白的晶体结构为3.15Å,并揭示了在此D3对称空心球的三重轴附近意外存在12个紧密结合的Zn 2 + 离子的意外情况。对短叶红景天全腔流体和纯化的血红蛋白的螯合实验揭示了Zn 2 + 离子在硫化物结合中的作用。以前被认为是前卫植物血红蛋白中的硫化物结合位点的游离半胱氨酸残基被发现掩埋在Pachyptila C1分子表面下方的疏水口袋中,这表明这些残基难以进入环境中的硫化物。尝试通过添加硫醇抑制剂来降低帕奇特氏菌血红蛋白的硫化物结合能力也是不成功的。这些发现挑战了目前公认的关于网状血红蛋白进化和适应还原性环境的范例。

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