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首页> 外文期刊>Journal of Molecular Biology >Solution structure of the MID1 B-box2 CHC(D/C)C(2)H(2) zinc-binding domain: insights into an evolutionarily conserved RING fold.
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Solution structure of the MID1 B-box2 CHC(D/C)C(2)H(2) zinc-binding domain: insights into an evolutionarily conserved RING fold.

机译:MID1 B-box2 CHC(D / C)C(2)H(2)锌结合域的解决方案结构:洞察进化保守的RING折叠。

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The B-box type 2 domain is a prominent feature of a large and growing family of RING, B-box, coiled-coil (RBCC) domain-containing proteins and is also present in more than 1500 additional proteins. Most proteins usually contain a single B-box2 domain, although some proteins contain tandem domains consisting of both type 1 and type 2 B-boxes, which actually share little sequence similarity. Recently, we determined the solution structure of B-box1 from MID1, a putative E3 ubiquitin ligase that is mutated in X-linked Opitz G/BBB syndrome, and showed that it adopted a betabetaalpha RING-like fold. Here, we report the tertiary structure of the B-box2 (CHC(D/C)C(2)H(2)) domain from MID1 using multidimensional NMR spectroscopy. This MID1 B-box2 domain consists of a short alpha-helix and a structured loop with two short anti-parallel beta-strands and adopts a tertiary structure similar to the B-box1 and RING structures, even though there is minimal primary sequence similarity between these domains. By mutagenesis, ESI-FTICR and ICP mass spectrometry, we show that the B-box2 domain coordinates two zinc atoms with a 'cross-brace' pattern: one by Cys175, His178, Cys195 and Cys198 and the other by Cys187, Asp190, His204, and His207. Interestingly, this is the first case that an aspartic acid is involved in zinc atom coordination in a zinc-finger domain, although aspartic acid has been shown to coordinate non-catalytic zinc in matrix metalloproteinases. In addition, the finding of a Cys195Phe substitution identified in a patient with X-linked Opitz GBBB syndrome supports the importance of proper zinc coordination for the function of the MID1 B-box2 domain. Notably, however, our structure differs from the only other published B-box2 structure, that from XNF7, which was shown to coordinate one zinc atom. Finally, the similarity in tertiary structures of the B-box2, B-box1 and RING domains suggests these domains have evolved from a common ancestor.
机译:B-box 2型结构域是包含RING,B-box,卷曲螺旋(RBCC)域的蛋白质的庞大且不断增长的家族的显着特征,并且还存在于1500多种其他蛋白质中。大多数蛋白质通常包含单个B-box2结构域,尽管某些蛋白质包含由1型和2型B-box组成的串联结构域,而实际上它们几乎没有序列相似性。最近,我们从MID1(一种假定的E3泛素连接酶,在X连锁的Opitz G / BBB综合征中发生突变)中确定了B-box1的溶液结构,并表明它采用了betabetaalpha RING样折叠。在这里,我们报告使用多维NMR光谱从MID1 B-box2(CHC(D / C)C(2)H(2))域的三级结构。这个MID1 B-box2结构域由一个短的α-螺旋和一个带有两个短的反平行β-链的结构化环组成,并采用类似于B-box1和RING结构的三级结构,即使它们之间的一级序列相似性最小这些域。通过诱变,ESI-FTICR和ICP质谱分析,我们显示B-box2域以“交叉括号”模式协调两个锌原子:一个通过Cys175,His178,Cys195和Cys198,另一个通过Cys187,Asp190,His204和His207。有趣的是,这是第一种情况,天冬氨酸在锌指结构域中参与锌原子配位,尽管已证明天冬氨酸能在基质金属蛋白酶中配位非催化锌。此外,在X连锁的Opitz GBBB综合征患者中发现的Cys195Phe替代物的发现支持正确的锌配位对于MID1 B-box2结构域功能的重要性。但是,值得注意的是,我们的结构不同于其他已发表的B-box2结构,也不同于XNF7,后者显示出可以配位一个锌原子。最后,B-box2,B-box1和RING域三级结构的相似性表明,这些域是从共同祖先进化而来的。

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