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1
The crystal structure of ribosomal chaperone trigger factor from Vibrio cholerae.霍乱弧菌核糖体伴侣触发因子的晶体结构。
Proc Natl Acad Sci U S A. 2004 Sep 14;101(37):13436-41. doi: 10.1073/pnas.0405868101. Epub 2004 Sep 7.
2
Prolyl isomerases in a minimal cell. Catalysis of protein folding by trigger factor from Mycoplasma genitalium.最小细胞中的脯氨酰异构酶。生殖支原体触发因子对蛋白质折叠的催化作用。
Eur J Biochem. 2000 Jun;267(11):3270-80. doi: 10.1046/j.1432-1327.2000.01355.x.
3
Helicobacter pylori cell binding factor 2: Insights into domain motion.幽门螺杆菌细胞结合因子2:对结构域运动的见解
J Struct Biol. 2016 Apr;194(1):90-101. doi: 10.1016/j.jsb.2016.02.002. Epub 2016 Feb 2.
4
Identification of nascent chain interaction sites on trigger factor.触发因子上新生链相互作用位点的鉴定
J Biol Chem. 2007 Apr 20;282(16):12186-93. doi: 10.1074/jbc.M609871200. Epub 2007 Feb 12.
5
Trigger factor in complex with the ribosome forms a molecular cradle for nascent proteins.与核糖体结合的触发因子为新生蛋白质形成了一个分子摇篮。
Nature. 2004 Sep 30;431(7008):590-6. doi: 10.1038/nature02899. Epub 2004 Aug 29.
6
L23 protein functions as a chaperone docking site on the ribosome.L23蛋白作为核糖体上的伴侣蛋白停靠位点发挥作用。
Nature. 2002 Sep 12;419(6903):171-4. doi: 10.1038/nature01047.
7
PPIase domain of trigger factor acts as auxiliary chaperone site to assist the folding of protein substrates bound to the crevice of trigger factor.触发因子的 PPIase 结构域充当辅助伴侣结合位点,以协助与触发因子裂隙结合的蛋白质底物的折叠。
Int J Biochem Cell Biol. 2010 Jun;42(6):890-901. doi: 10.1016/j.biocel.2010.01.019. Epub 2010 Jan 21.
8
Structural insight into proline / isomerization of unfolded proteins catalyzed by the trigger factor chaperone.结构洞察引发因子伴侣催化未折叠蛋白脯氨酸/异构化。
J Biol Chem. 2018 Sep 28;293(39):15095-15106. doi: 10.1074/jbc.RA118.003579. Epub 2018 Aug 9.
9
Structural and functional studies of FkpA from Escherichia coli, a cis/trans peptidyl-prolyl isomerase with chaperone activity.来自大肠杆菌的FkpA的结构与功能研究,一种具有伴侣活性的顺/反肽基脯氨酰异构酶。
J Mol Biol. 2004 Jan 9;335(2):595-608. doi: 10.1016/j.jmb.2003.10.056.
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Chaperone binding at the ribosomal exit tunnel.伴侣蛋白在核糖体出口通道处的结合。
Structure. 2003 Dec;11(12):1547-56. doi: 10.1016/j.str.2003.11.003.

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Insights into Peptidyl-Prolyl - Isomerases from Clinically Important Protozoans: From Structure to Potential Biotechnological Applications.对来自临床重要原生动物的肽基脯氨酰异构酶的见解:从结构到潜在的生物技术应用
Pathogens. 2024 Jul 31;13(8):644. doi: 10.3390/pathogens13080644.
2
Structural features of chloroplast trigger factor determined at 2.6 Å resolution.叶绿体触发因子的结构特征在 2.6 Å 分辨率下确定。
Acta Crystallogr D Struct Biol. 2022 Oct 1;78(Pt 10):1259-1272. doi: 10.1107/S2059798322009068. Epub 2022 Sep 27.
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Zinc-Dependent Oligomerization of Trigger Factor Chaperone.触发因子伴侣蛋白的锌依赖性寡聚化
Biology (Basel). 2021 Oct 26;10(11):1106. doi: 10.3390/biology10111106.
4
The dynamic dimer structure of the chaperone Trigger Factor.伴侣蛋白 Trigger Factor 的动态二聚体结构。
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Structural and molecular comparison of bacterial and eukaryotic trigger factors.细菌和真核触发因子的结构和分子比较。
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Acyl-homoserine lactone-based quorum sensing in the Roseobacter clade: complex cell-to-cell communication controls multiple physiologies.基于酰基高丝氨酸内酯的群体感应在玫瑰杆菌群中:复杂的细胞间通讯控制多种生理机能。
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7
Protein folding on the ribosome studied using NMR spectroscopy.使用 NMR 光谱研究核糖体上的蛋白质折叠。
Prog Nucl Magn Reson Spectrosc. 2013 Oct;74(100):57-75. doi: 10.1016/j.pnmrs.2013.07.003. Epub 2013 Jul 27.
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SurA is involved in the targeting to the outer membrane of a Tat signal sequence-anchored protein.SurA 参与了 Tat 信号序列锚定蛋白的靶向到外膜。
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9
Multifaceted SlyD from Helicobacter pylori: implication in [NiFe] hydrogenase maturation.幽门螺杆菌多功能 slyD:在[NiFe]氢化酶成熟中的作用。
J Biol Inorg Chem. 2012 Mar;17(3):331-43. doi: 10.1007/s00775-011-0855-y. Epub 2011 Nov 2.
10
Trigger factor from the psychrophilic bacterium Psychrobacter frigidicola is a monomeric chaperone.嗜冷菌嗜冷栖冷杆菌的触发因子是一种单体伴侣蛋白。
J Bacteriol. 2009 Feb;191(4):1162-8. doi: 10.1128/JB.01137-08. Epub 2008 Dec 5.

本文引用的文献

1
[28] Phase determination from multiwavelength anomalous diffraction measurements.[28] 基于多波长反常衍射测量的相位测定
Methods Enzymol. 1997;276:494-523. doi: 10.1016/S0076-6879(97)76074-9.
2
[27] Maximum-likelihood heavy-atom parameter refinement for multiple isomorphous replacement and multiwavelength anomalous diffraction methods.[27] 用于多同晶置换和多波长反常衍射方法的最大似然重原子参数精修
Methods Enzymol. 1997;276:472-494. doi: 10.1016/S0076-6879(97)76073-7.
3
Ribbons.丝带。
Methods Enzymol. 1997;277:493-505.
4
Function of trigger factor and DnaK in multidomain protein folding: increase in yield at the expense of folding speed.触发因子和DnaK在多结构域蛋白质折叠中的作用:以折叠速度为代价提高产量。
Cell. 2004 Apr 16;117(2):199-209. doi: 10.1016/s0092-8674(04)00299-5.
5
Low temperature or GroEL/ES overproduction permits growth of Escherichia coli cells lacking trigger factor and DnaK.低温或GroEL/ES过量表达可使缺乏触发因子和DnaK的大肠杆菌细胞生长。
FEBS Lett. 2004 Feb 13;559(1-3):181-7. doi: 10.1016/S0014-5793(04)00052-3.
6
Trigger factor peptidyl-prolyl cis/trans isomerase activity is not essential for the folding of cytosolic proteins in Escherichia coli.触发因子肽基脯氨酰顺/反异构酶活性对于大肠杆菌胞质蛋白的折叠并非必不可少。
J Biol Chem. 2004 Apr 2;279(14):14165-70. doi: 10.1074/jbc.M313635200. Epub 2004 Jan 16.
7
Chaperone binding at the ribosomal exit tunnel.伴侣蛋白在核糖体出口通道处的结合。
Structure. 2003 Dec;11(12):1547-56. doi: 10.1016/j.str.2003.11.003.
8
Trigger factor-mediated prolyl isomerization influences maturation of the Streptococcus pyogenes cysteine protease.触发因子介导的脯氨酰异构化影响化脓性链球菌半胱氨酸蛋白酶的成熟。
J Bacteriol. 2003 Jun;185(12):3661-7. doi: 10.1128/JB.185.12.3661-3667.2003.
9
Trigger Factor and DnaK possess overlapping substrate pools and binding specificities.触发因子和DnaK具有重叠的底物库和结合特异性。
Mol Microbiol. 2003 Mar;47(5):1317-28. doi: 10.1046/j.1365-2958.2003.03370.x.
10
Interaction of trigger factor with the ribosome.触发因子与核糖体的相互作用。
J Mol Biol. 2003 Feb 14;326(2):585-92. doi: 10.1016/s0022-2836(02)01427-4.

霍乱弧菌核糖体伴侣触发因子的晶体结构。

The crystal structure of ribosomal chaperone trigger factor from Vibrio cholerae.

作者信息

Ludlam Anthony V, Moore Brian A, Xu Zhaohui

机构信息

Department of Biological Chemistry, Medical School and Life Sciences Institute, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Sep 14;101(37):13436-41. doi: 10.1073/pnas.0405868101. Epub 2004 Sep 7.

DOI:10.1073/pnas.0405868101
PMID:15353602
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC518775/
Abstract

Trigger factor is a molecular chaperone that is present in all species of eubacteria. It binds to the ribosomal 50S subunit near the translation exit tunnel and is thought to be the first protein to interact with nascent polypeptides emerging from the ribosome. The chaperone has a peptidyl-prolyl cis-trans isomerase (PPIase) activity that catalyzes the rate-limiting proline isomerization in the protein-folding process. We have determined the crystal structure of nearly full-length trigger factor from Vibrio cholerae by x-ray crystallography at 2.5-A resolution. The structure is composed of two trigger-factor molecules related by a noncrystallographic two-fold symmetry axis. The monomer has an elongated shape and is folded into three domains: an N-terminal domain I that binds to the ribosome, a central domain II that contains PPIase activity, and a C-terminal domain III. The active site of the PPIase domain is occupied by a loop from domain III, suggesting that the PPIase activity of the protein could be regulated. The dimer interface is formed between domains I and III and contains residues of mixed properties. Further implications about dimerization, ribosome binding, and other functions of trigger factor are discussed.

摘要

触发因子是一种存在于所有真细菌物种中的分子伴侣。它结合在翻译出口通道附近的核糖体50S亚基上,被认为是第一个与从核糖体中出现的新生多肽相互作用的蛋白质。该伴侣蛋白具有肽基脯氨酰顺反异构酶(PPIase)活性,可催化蛋白质折叠过程中限速的脯氨酸异构化。我们通过X射线晶体学以2.5埃的分辨率确定了霍乱弧菌几乎全长触发因子的晶体结构。该结构由两个通过非晶体学二重对称轴相关的触发因子分子组成。单体呈细长形状,折叠成三个结构域:与核糖体结合的N端结构域I、包含PPIase活性的中央结构域II和C端结构域III。PPIase结构域的活性位点被结构域III的一个环占据,这表明该蛋白质的PPIase活性可能受到调节。二聚体界面在结构域I和III之间形成,包含具有混合性质的残基。还讨论了关于触发因子二聚化、核糖体结合和其他功能的进一步意义。