首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Torpedo californica acetylcholinesterase is stabilized by binding of a divalent metal ion to a novel and versatile 4D motif
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Torpedo californica acetylcholinesterase is stabilized by binding of a divalent metal ion to a novel and versatile 4D motif

机译:鱼雷加州乙酰胆碱酯酶通过将二价金属离子与新颖和通用的4D基序结合而稳定

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摘要

Stabilization of Torpedo californica acetylcholinesterase by the divalent cations Ca+2, Mg+2, and Mn+2 was investigated. All three substantially protect the enzyme from thermal inactivation. Electron paramagnetic resonance revealed one high‐affinity binding site for Mn+2 and several much weaker sites. Differential scanning calorimetry showed a single irreversible thermal transition. All three cations raise both the temperature of the transition and the activation energy, with the transition becoming more cooperative. The crystal structures of the Ca+2 and Mg+2 complexes with Torpedo acetylcholinesterase were solved. A principal binding site was identified. In both cases, it consists of four aspartates (a 4D motif), within which the divalent ion is embedded, together with several water molecules. It makes direct contact with two of the aspartates, and indirect contact, via waters, with the other two. The 4D motif has been identified in 31 acetylcholinesterase sequences and 28 butyrylcholinesterase sequences. Zebrafish acetylcholinesterase also contains the 4D motif; it, too, is stabilized by divalent metal ions. The ASSAM server retrieved 200 other proteins that display the 4D motif, in many of which it is occupied by a divalent cation. It is a very versatile motif, since, even though tightly conserved in terms of RMSD values, it can contain from one to as many as three divalent metal ions, together with a variable number of waters. This novel motif, which binds primarily divalent metal ions, is shared by a broad repertoire of proteins. An animated Interactive 3D Complement (I3DC) is available in Proteopedia at http://proteopedia.org/w/Journal:Protein_Science:3.
机译:通过二价阳离子的Ca + 2,Mg +2的,和Mn + 2鱼雷夜蛾乙酰胆碱酯酶的稳定化进行了研究。所有三个基本上防止热灭活的酶。电子顺磁共振发现一个高亲和力锰+ 2和几个弱得多网站结合位点。差示扫描量呈单不可逆热转变。所有这三个阳离子提高转变的温度和活化能,与过渡变得更加合作。钙+ 2和Mg + 2种配合物的鱼雷乙酰胆碱酯酶的晶体结构进行了解决。一个主要的结合位点被确定。在这两种情况下,它由四个天冬氨酸(四维基序),其内的二价离子是嵌入的,与几个水分子一起。它使两个天冬氨酸酯的直接接触,间接接触,通过水域,与其他两个。四维基序已经在31个乙酰胆碱酯酶序列和丁酰胆碱酯酶28组序列已经确定。斑马鱼乙酰胆碱酯酶还包含了4D主题;它也是由二价金属离子稳定化。阿萨姆服务器检索时显示的4D基序,在其中有许多是由二价阳离子所占据200种的其它蛋白质。这是一个非常通用的基序,因为,即使在RMSD值方面紧紧保守的,它可从一个含有至多达三个二价金属离子,连同水的可变数目。这种新颖的基序,其主要结合二价金属离子,是由蛋白质的广泛剧目共享。动画交互式3D补(I3DC)是Proteopedia可在http://proteopedia.org/w/Journal:Protein_Science:3。

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