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本文引用的文献

1
Tyrosine phosphorylation and bacterial virulence.酪氨酸磷酸化与细菌毒力。
Int J Oral Sci. 2012 Mar;4(1):1-6. doi: 10.1038/ijos.2012.6. Epub 2012 Mar 2.
2
NRG-CING: integrated validation reports of remediated experimental biomolecular NMR data and coordinates in wwPDB.NRG-CING:wwPDB 中经修复的实验生物分子 NMR 数据和坐标的综合验证报告。
Nucleic Acids Res. 2012 Jan;40(Database issue):D519-24. doi: 10.1093/nar/gkr1134. Epub 2011 Dec 1.
3
Mycobacterium tuberculosis protein tyrosine phosphatase (PtpA) excludes host vacuolar-H+-ATPase to inhibit phagosome acidification.结核分枝杆菌蛋白酪氨酸磷酸酶(PtpA)排除宿主液泡型 H+-ATP 酶以抑制吞噬体酸化。
Proc Natl Acad Sci U S A. 2011 Nov 29;108(48):19371-6. doi: 10.1073/pnas.1109201108. Epub 2011 Nov 15.
4
New strategies in fighting TB: targeting Mycobacterium tuberculosis-secreted phosphatases MptpA & MptpB.抗结核新策略:针对结核分枝杆菌分泌的磷酸酶 MptpA 和 MptpB。
Future Med Chem. 2010 Aug;2(8):1325-37. doi: 10.4155/fmc.10.214.
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The challenge of new drug discovery for tuberculosis.结核病新药研发面临的挑战。
Nature. 2011 Jan 27;469(7331):483-90. doi: 10.1038/nature09657.
6
Protein kinase and phosphatase signaling in Mycobacterium tuberculosis physiology and pathogenesis.蛋白激酶和磷酸酶信号传导在结核分枝杆菌生理学和发病机制中的作用
Biochim Biophys Acta. 2010 Mar;1804(3):620-7. doi: 10.1016/j.bbapap.2009.09.008. Epub 2009 Sep 18.
7
TALOS+: a hybrid method for predicting protein backbone torsion angles from NMR chemical shifts.TALOS+:一种利用核磁共振化学位移预测蛋白质主链扭转角的混合方法。
J Biomol NMR. 2009 Aug;44(4):213-23. doi: 10.1007/s10858-009-9333-z. Epub 2009 Jun 23.
8
Mycobacterium tuberculosis PtkA is a novel protein tyrosine kinase whose substrate is PtpA.结核分枝杆菌PtkA是一种新型蛋白酪氨酸激酶,其底物为PtpA。
Biochem J. 2009 May 13;420(2):155-60. doi: 10.1042/BJ20090478.
9
Protein conformational transitions: the closure mechanism of a kinase explored by atomistic simulations.蛋白质构象转变:通过原子模拟探索激酶的关闭机制
J Am Chem Soc. 2009 Jan 14;131(1):244-50. doi: 10.1021/ja806846q.
10
Mycobacterium tuberculosis virulence is mediated by PtpA dephosphorylation of human vacuolar protein sorting 33B.结核分枝杆菌的毒力是由人类液泡蛋白分选33B的PtpA去磷酸化介导的。
Cell Host Microbe. 2008 May 15;3(5):316-22. doi: 10.1016/j.chom.2008.03.008.

结核分枝杆菌低分子量蛋白酪氨酸磷酸酶 A(MptpA)的apo 结构可促进更具针对性的靶向药物开发。

The apo-structure of the low molecular weight protein-tyrosine phosphatase A (MptpA) from Mycobacterium tuberculosis allows for better target-specific drug development.

机构信息

Institute for Organic Chemistry and Chemical Biology, ohann Wolfgang Goethe University, Max-von-Laue-Strasse 7, D-60438 Frankfurt am Main, Germany.

出版信息

J Biol Chem. 2012 Oct 5;287(41):34569-82. doi: 10.1074/jbc.M112.399261. Epub 2012 Aug 10.

DOI:10.1074/jbc.M112.399261
PMID:22888002
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3464563/
Abstract

Protein-tyrosine phosphatases (PTPs) and protein-tyrosine kinases co-regulate cellular processes. In pathogenic bacteria, they are frequently exploited to act as key virulence factors for human diseases. Mycobacterium tuberculosis, the causative organism of tuberculosis, secretes a low molecular weight PTP (LMW-PTP), MptpA, which is required for its survival upon infection of host macrophages. Although there is otherwise no sequence similarity of LMW-PTPs to other classes of PTPs, the phosphate binding loop (P-loop) CX(5)R and the loop containing a critical aspartic acid residue (D-loop), required for the catalytic activity, are well conserved. In most high molecular weight PTPs, ligand binding to the P-loop triggers a large conformational reorientation of the D-loop, in which it moves ∼10 Å, from an "open" to a "closed" conformation. Until now, there have been no ligand-free structures of LMW-PTPs described, and hence the dynamics of the D-loop have remained largely unknown for these PTPs. Here, we present a high resolution solution NMR structure of the free form of the MptpA LMW-PTP. In the absence of ligand and phosphate ions, the D-loop adopts an open conformation. Furthermore, we characterized the binding site of phosphate, a competitive inhibitor of LMW-PTPs, on MptpA and elucidated the involvement of both the P- and D-loop in phosphate binding. Notably, in LMW-PTPs, the phosphorylation status of two well conserved tyrosine residues, typically located in the D-loop, regulates the enzyme activity. PtkA, the kinase complementary to MptpA, phosphorylates these two tyrosine residues in MptpA. We characterized the MptpA-PtkA interaction by NMR spectroscopy to show that both the P- and D-loop form part of the binding interface.

摘要

蛋白酪氨酸磷酸酶(PTPs)和蛋白酪氨酸激酶共同调节细胞过程。在致病细菌中,它们经常被用作人类疾病的关键毒力因子。结核分枝杆菌(Mycobacterium tuberculosis)是结核病的病原体,它分泌一种低分子量 PTP(LMW-PTP),即 MptpA,该蛋白对于其在感染宿主巨噬细胞后存活是必需的。尽管 LMW-PTP 与其他 PTP 家族没有序列相似性,但磷酸结合环(P 环)CX(5)R 和包含关键天冬氨酸残基(D 环)的环,这是催化活性所必需的,都得到了很好的保守。在大多数高分子量 PTP 中,配体与 P 环的结合会触发 D 环的大幅度构象重排,在此过程中,D 环从“开放”构象移动约 10Å,变为“关闭”构象。到目前为止,尚未描述过 LMW-PTP 的无配体结构,因此这些 PTP 的 D 环动力学在很大程度上仍然未知。在这里,我们展示了 MptpA LMW-PTP 游离形式的高分辨率溶液 NMR 结构。在没有配体和磷酸根离子的情况下,D 环采用开放构象。此外,我们还对 MptpA 上磷酸根的结合位点进行了特征描述,磷酸根是 LMW-PTP 的竞争性抑制剂,并阐明了 P 环和 D 环都参与了磷酸根的结合。值得注意的是,在 LMW-PTP 中,两个典型位于 D 环中的高度保守的酪氨酸残基的磷酸化状态调节酶活性。MptpA 的激酶互补物 PtkA 会使 MptpA 中的这两个酪氨酸残基磷酸化。我们通过 NMR 光谱学对 MptpA-PtkA 相互作用进行了特征描述,表明 P 环和 D 环都构成了结合界面的一部分。