首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Crystal structure of deoxygenated Limulus polyphemus subunit II hemocyanin at 2.18 A resolution: clues for a mechanism for allosteric regulation.
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Crystal structure of deoxygenated Limulus polyphemus subunit II hemocyanin at 2.18 A resolution: clues for a mechanism for allosteric regulation.

机译:在2.18 A分辨率下脱氧的poly多毛mus亚基II血蓝蛋白的晶体结构:变构调节机制的线索。

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摘要

The crystal structure of Limulus polyphemus subunit type II hemocyanin in the deoxygenated state has been determined to a resolution of 2.18 A. Phase information for this first structure of a cheliceratan hemocyanin was obtained by molecular replacement using the crustacean hemocyanin structure of Panulirus interruptus. The most striking observation in the Limulus structure is the unexpectedly large distance of 4.6 A between both copper ions in the oxygen-binding site. Each copper has approximate trigonal planar coordination by three histidine N epsilon atoms. No bridging ligand between the copper ions could be detected. Other important new discoveries are (1) the presence of a cis-peptide bond between Glu 309 and Ser 310, with the carbonyl oxygen of the peptide plane hydrogen bonded to the N delta atom of the copper B ligand His 324; (2) localization of a chloride-binding site in the interface between the first and second domain; (3) localization of a putative calcium-binding site in the third domain. Furthermore, comparison of Limulus versus Panulirus hemocyanin revealed considerable tertiary and quaternary rigid body movements, although the overall folds are similar. Within the subunit, the first domain is rotated by about 7.5 degrees with respect to the other two domains, whereas within the hexamer the major movement is a 3.1 degrees rotation of the trimers with respect to each other. The rigid body rotation of the first domain suggests a structural mechanism for the allosteric regulation by chloride ions and probably causes the cooperative transition of the hexamer between low and high oxygen affinity states. In this postulated mechanism, the fully conserved Phe49 is the key residue that couples conformational changes of the dinuclear copper site into movements of the first domain.
机译:已确定脱氧状态下的poly多毛mus亚基II型血蓝蛋白的晶体结构的分辨率为2.18A。通过使用Panulirus Interruptus的甲壳类血蓝蛋白结构进行分子置换,获得了奇克拉霉素血蓝蛋白第一个结构的相信息。 Li结构中最引人注目的观察是氧结合位点中两个铜离子之间的4.6 A出乎意料的大距离。每个铜具有通过三个组氨酸Nε原子的近似三角平面配位。在铜离子之间没有检测到桥联配体。其他重要的新发现是(1)Glu 309和Ser 310之间存在顺式肽键,肽平面氢的羰基氧键合到铜B配体His 324的N三角原子上; (2)在第一和第二结构域之间的界面中定位氯化物结合位点; (3)在第三个结构域中定位假定的钙结合位点。此外,comparison和mul血蓝蛋白的比较显示出相当大的第三级和第四级刚体运动,尽管总体折叠相似。在亚基内,第一个区域相对于其他两个区域旋转约7.5度,而在六聚体内部,主要运动是三聚体相对于彼此旋转3.1度。第一结构域的刚体旋转提示了氯离子变构调节的结构机制,并可能导致六聚体在低和高氧亲和力状态之间协同转变。在这种假定的机制中,完全保守的Phe49是将双核铜位点的构象变化耦合到第一个结构域运动的关键残基。

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