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首页> 外文期刊>Journal of Molecular Biology >Nucleotide binding states of subunit A of the A-ATP synthase and the implication of P-loop switch in evolution.
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Nucleotide binding states of subunit A of the A-ATP synthase and the implication of P-loop switch in evolution.

机译:A-ATP合酶的亚基A的核苷酸结合状态以及P环开关在进化中的意义。

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The crystal structures of the nucleotide-empty (A(E)), 5'-adenylyl-beta,gamma-imidodiphosphate (A(PNP))-bound, and ADP (A(DP))-bound forms of the catalytic A subunit of the energy producer A(1)A(O) ATP synthase from Pyrococcus horikoshii OT3 have been solved at 2.47 A and 2.4 A resolutions. The structures provide novel features of nucleotide binding and depict the residues involved in the catalysis of the A subunit. In the A(E) form, the phosphate analog SO(4)(2-) binds, via a water molecule, to the phosphate binding loop (P-loop) residue Ser238, which is also involved in the phosphate binding of ADP and 5'-adenylyl-beta,gamma-imidodiphosphate. Together with amino acids Gly234 and Phe236, the serine residue stabilizes the arched P-loop conformation of subunit A, as shown by the 2.4-A structure of the mutant protein S238A in which the P-loop flips into a relaxed state, comparable to the one in catalytic beta subunits of F(1)F(O) ATP synthases. Superposition of the existing P-loop structures of ATPases emphasizes the unique P-loop in subunit A, which is also discussed in the light of an evolutionary P-loop switch in related A(1)A(O) ATP synthases, F(1)F(O) ATP synthases, and vacuolar ATPases and implicates diverse catalytic mechanisms inside these biological motors.
机译:核苷酸空的(A(E)),5'-腺苷基-β,γ-亚氨基二磷酸(A(PNP))结合和ADP(A(DP))结合形式的催化A亚基的晶体结构来自火球菌OT3的能量产生剂A(1)A(O)ATP合酶的解析度为2.47 A和2.4A。该结构提供了核苷酸结合的新特征,并描绘了参与A亚基催化的残基。在A(E)形式中,磷酸盐类似物SO(4)(2-)通过水分子与磷酸盐结合环(P-loop)残基Ser238结合,该残基也参与ADP和ADP的磷酸盐结合5'-腺苷基-β,γ-亚氨基二磷酸。丝氨酸残基与氨基酸Gly234和Phe236一起稳定了亚基A的拱形P环构象,如突变蛋白S238A的2.4-A结构所示,其中P环翻转为松弛状态,与F(1)F(O)ATP合酶的催化性β亚基之一。 ATPase的现有P环结构的叠加强调了亚基A中的独特P环,这也根据相关A(1)A(O)ATP合酶F(1)中的进化P环开关进行了讨论F(O)ATP合酶和液泡ATPase,并暗示这些生物马达内部存在多种催化机制。

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