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鼠伤寒沙门氏菌中ATP:类咕啉腺苷转移酶在游离状态、与MgATP复合或与羟钴胺素和MgATP复合时的三维结构。

Three-dimensional structure of ATP:corrinoid adenosyltransferase from Salmonella typhimurium in its free state, complexed with MgATP, or complexed with hydroxycobalamin and MgATP.

作者信息

Bauer C B, Fonseca M V, Holden H M, Thoden J B, Thompson T B, Escalante-Semerena J C, Rayment I

机构信息

Department of Biochemistry, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Biochemistry. 2001 Jan 16;40(2):361-74. doi: 10.1021/bi002145o.

Abstract

In Salmonella typhimurium, formation of the cobalt-carbon bond in the biosynthetic pathway for adenosylcobalamin is catalyzed by the product of the cobA gene which encodes a protein of 196 amino acid residues. This enzyme is an ATP:co(I)rrinoid adenosyltransferase which transfers an adenosyl moiety from MgATP to a broad range of co(I)rrinoid substrates that are believed to include cobinamide, its precursor cobyric acid and probably others as yet unidentified, and hydroxocobalamin. Three X-ray structures of CobA are reported here: its substrate-free form, a complex of CobA with MgATP, and a ternary complex of CobA with MgATP and hydroxycobalamin to 2.1, 1.8, and 2.1 A resolution, respectively. These structures show that the enzyme is a homodimer. In the apo structure, the polypeptide chain extends from Arg(28) to Lys(181) and consists of an alpha/beta structure built from a six-stranded parallel beta-sheet with strand order 324516. The topology of this fold is very similar to that seen in RecA protein, helicase domain, F(1)ATPase, and adenosylcobinamide kinase/adenosylcobinamide guanylyltransferase where a P-loop is located at the end of the first strand. Strikingly, the nucleotide in the MgATP.CobA complex binds to the P-loop of CobA in the opposite orientation compared to all the other nucleotide hydrolases. That is, the gamma-phosphate binds at the location normally occupied by the alpha-phosphate. The unusual orientation of the nucleotide arises because this enzyme transfers an adenosyl group rather than the gamma-phosphate. In the ternary complex, the binding site for hydroxycobalamin is located in a shallow bowl-shaped depression at the C-terminal end of the beta-sheet of one subunit; however, the active site is capped by the N-terminal helix from the symmetry-related subunit that now extends from Gln(7) to Ala(24). The lower ligand of cobalamin is well-ordered and interacts mostly with the N-terminal helix of the symmetry-related subunit. Interestingly, there are few interactions between the protein and the polar side chains of the corrin ring which accounts for the broad specificity of this enzyme. The corrin ring is oriented such that the cobalt atom is located approximately 6.1 A from C5' of the ribose and is beyond the range of nucleophilic attack. This suggests that a conformational change occurs in the ternary complex when Co(III) is reduced to Co(I).

摘要

在鼠伤寒沙门氏菌中,腺苷钴胺生物合成途径中钴 - 碳键的形成由cobA基因的产物催化,该基因编码一种含196个氨基酸残基的蛋白质。这种酶是一种ATP:辅酶(I)类咕啉腺苷转移酶,它将腺苷部分从MgATP转移到多种辅酶(I)类咕啉底物上,这些底物据信包括钴胺酰胺、其前体钴胺酸以及可能其他尚未确定的物质,还有羟钴胺素。本文报道了CobA的三种X射线结构:其无底物形式、CobA与MgATP的复合物以及CobA与MgATP和羟钴胺素的三元复合物,分辨率分别为2.1 Å、1.8 Å和2.1 Å。这些结构表明该酶是一个同二聚体。在无辅基结构中,多肽链从Arg(28)延伸至Lys(181),由一个α/β结构组成,该结构由一个六链平行β折叠片构建而成,链的顺序为324516。这种折叠的拓扑结构与RecA蛋白的解旋酶结构域、F₁ATP酶以及腺苷钴胺酰胺激酶/腺苷钴胺酰胺鸟苷基转移酶中所见的非常相似,其中一个P环位于第一条链的末端。引人注目的是,与所有其他核苷酸水解酶相比,MgATP·CobA复合物中的核苷酸以相反的方向与CobA的P环结合。也就是说,γ - 磷酸基团结合在通常由α - 磷酸基团占据的位置。核苷酸的这种不寻常取向是因为该酶转移的是腺苷基团而不是γ - 磷酸基团。在三元复合物中,羟钴胺素的结合位点位于一个亚基β折叠片C末端的浅碗状凹陷处;然而,活性位点被来自对称相关亚基的N末端螺旋封闭,该螺旋现在从Gln(7)延伸至Ala(24)。钴胺素的下部配体排列有序,主要与对称相关亚基的N末端螺旋相互作用。有趣的是,蛋白质与咕啉环的极性侧链之间几乎没有相互作用,这解释了该酶的广泛特异性。咕啉环的取向使得钴原子距离核糖的C5'约6.1 Å,超出了亲核攻击的范围。这表明当Co(III)还原为Co(I)时,三元复合物中会发生构象变化。

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