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Structures of Purine Nucleoside Phosphorylase form Mycobacterium tuberculosis in Complexes with Immucillin-H and Its Pieces

机译:嘌呤核苷磷酸化酶的结构在络合物中形成分枝杆菌与Immuceulin-H及其碎片

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摘要

A structural genomics comparison of purine nucleoside phosphorylases (PNPs) indicated that the enzyme encoded by Mycobacterium tuberculosis(TB-PNP) resembles the mammalian trimeric structure rather than the bacterial hexameric PNPs. The crystal structure of M. tuberculosis PNP in complex with the transition-state analogue immucil1in-H (ImmH) and inorganic phosphate was solved at 1.75 A resolution and confirms the trimeric structure. Binding of the inhibitor occurs independently at the three catalytic sites, unlike mammalian PNPs which demonstrate negative cooperativity in ImmH binding. Reduced subunit interface contacts for TB-PNP, compared to the mammalian enzymes, correlate with the loss of the cooperative inhibitor binding. Mammalian and TB-PNPs both exhibit slow-onset inhibition and picomolar dissociation constants for ImmH. The structure supports a catalytic mechanism of reactant destabilization by neighboring group electrostatic interactions, transition-state stabilization, and leaving group activation. Despite an overall amino acid sequence identity of 33% between bovine and TB-PNPs and almost complete conservation in active site residues, one catalytic site difference suggests a strategy for the design of transition-state analogues with specificity for TB-PNP. The structure of TB-PNP was also solved to 2.0 A with 9-deazahypoxanthine (9dHX), iminoribitol (m), and PO4 to reconstruct the ImmH complex with its separate components. One subunit of the trimer has 9dHX, m, and PO4 bound, while the remaining two subunits contain only 9dHX. In the filled subunit, 9dHX retains the contacts found in the ImmH complex. However, the region of m that corresponds to the oxocarbenium ion is translocated in the direction of the reaction coordinate, and the nucleophilic phosphate rotates away from the IR group. Loose packing of the pieces of ImmH in the catalytic site establishes that covalent connectivity in ImmH is required to achieve the tightly bound complex.
机译:嘌呤核苷磷酸化酶(PNPS)的结构基因组学比较表明,结核分枝杆菌(TB-PNP)编码的酶类似于哺乳动物三聚物结构而不是细菌六聚体PNP。用过渡态类似物脱乳1林-H(IMMH)和无机磷酸络合物中的M.结核病PNP的晶体结构在1.75分辨率下求解并确认三聚体结构。与哺乳动物PNP不同,抑制剂的结合在三个催化位点处独立地发生,其在ImMH结合中表现出负合作效率。与哺乳动物酶相比,TB-PNP的减少的亚基界面触点与合作抑制剂结合的丧失相关。哺乳动物和TB-PNPS均表现出慢性发病抑制和纤维解的解离常数用于IMMH。该结构通过相邻的群体静电相互作用,过渡态稳定化和离开组活化来支持反应物稳定化的催化机制。尽管牛和Tb-PNPS之间的总体氨基酸序列同一性为33%,但在活性位点残留物中几​​乎完全保护,但一种催化位点差表明了一种具有TB-PNP特异性的过渡状态类似物的设计的策略。 TB-PNP的结构也溶解为2.0A,用9-二氮杂氮杂物(9DHX),咪唑醇(M)和PO4以与其单独的组分重建ImHH复合物。三聚体的一个亚基具有9dhx,m和po4绑定,而剩余的两个子单元仅包含9dhx。在填充的亚基中,9DHX保留在ImMH复合物中的触点。然而,对应于氧化羰烯离子的M的区域在反应坐标的方向上挥动,并且亲核磷酸盐远离IR组旋转。催化部位中的IMMH片的松散包装建立了ImMH中的共价连通性,以实现紧密结合的复合物。

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  • 来源
    《Biochemistry》 |2001年第28期|共12页
  • 作者单位

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

    Department of Biochemistry Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 Carbohydrate Chemistry Team Industrial Research Ltd. Lower Hutt New Zealand and Departamento de Biologia Molecular e Biotecnologia Unive;

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  • 正文语种 eng
  • 中图分类 生物化学;
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