Berry M B, Phillips G N
W.M. Keck Center for Computational Biology, Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005, USA.
Proteins. 1998 Aug 15;32(3):276-88. doi: 10.1002/(sici)1097-0134(19980815)32:3<276::aid-prot3>3.0.co;2-g.
Crystal structures of Bacillus stearothermophilus adenylate kinase with bound Ap5A, Mn2+ Ap5A, and Mg2+ Ap5A have been determined by X-ray crystallography to resolutions of 1.6 A, 1.85 A, and 1.96 A, respectively. The protein's lid domain is partially open, being both rotated and translated away from bound Ap5A. The flexibility of the lid domain in the ternary state and its ability to transfer force directly to the the active site is discussed in light of our proposed entropic mechanism for catalytic turnover. The bound Zn2+ atom is demonstrably structural in nature, with no contacts other than its ligating cysteine residues within 5 A. The B. stearothermophilus adenylate kinase lid appears to be a truncated zinc finger domain, lacking the DNA binding finger, which we have termed a zinc knuckle domain. In the Mg2+ Ap5A and Mn2+ Ap5A structures, Mg2+ and Mn2+ demonstrate six coordinate octahedral geometry. The interactions of the Mg2+-coordinated water molecules with the protein and Ap5A phosphate chain demonstrate their involvement in catalyzing phosphate transfer. The protein selects for beta-y (preferred by Mg2+) rather than alpha-gamma (preferred by Mn2+) metal ion coordination by forcing the ATP phosphate chain to have an extended conformation.
通过X射线晶体学分别测定了与结合Ap5A、Mn2+ Ap5A和Mg2+ Ap5A的嗜热脂肪芽孢杆菌腺苷酸激酶的晶体结构,分辨率分别为1.6埃、1.85埃和1.96埃。该蛋白质的盖子结构域部分打开,从结合的Ap5A上旋转并平移开。根据我们提出的催化周转的熵机制,讨论了盖子结构域在三元状态下的灵活性及其将力直接传递到活性位点的能力。结合的Zn2+原子在本质上显然是结构性的,除了其在5埃范围内的连接半胱氨酸残基外没有其他接触。嗜热脂肪芽孢杆菌腺苷酸激酶盖子似乎是一个截短的锌指结构域,缺少DNA结合指,我们将其称为锌节结构域。在Mg2+ Ap5A和Mn2+ Ap5A结构中,Mg2+和Mn2+呈现六配位八面体几何构型。Mg2+配位的水分子与蛋白质和Ap5A磷酸链的相互作用表明它们参与催化磷酸转移。通过迫使ATP磷酸链具有伸展构象,该蛋白质选择β -γ(Mg2+偏好)而非α -γ(Mn2+偏好)金属离子配位。