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2
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Structural and mutational studies on the importance of oligosaccharide binding for the activity of yeast PNGase.关于寡糖结合对酵母N-糖苷酶活性重要性的结构和突变研究
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Structure of the mouse peptide N-glycanase-HR23 complex suggests co-evolution of the endoplasmic reticulum-associated degradation and DNA repair pathways.小鼠肽N-聚糖酶-HR23复合物的结构表明内质网相关降解和DNA修复途径共同进化。
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Structural and biochemical studies of the C-terminal domain of mouse peptide-N-glycanase identify it as a mannose-binding module.小鼠肽-N-聚糖酶C端结构域的结构与生化研究表明其为一个甘露糖结合模块。
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Misfolding of glycoproteins is a prerequisite for peptide: N-glycanase mediated deglycosylation.糖蛋白错误折叠是肽:N-聚糖酶介导的去糖基化的前提条件。
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Comprehensive Analysis of the Structure and Function of Peptide:N-Glycanase 1 and Relationship with Congenital Disorder of Deglycosylation.全面分析肽:N-聚糖酶 1 的结构与功能及其与先天性糖基化缺陷症的关系。
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Binding of HIV-1 Vpr protein to the human homolog of the yeast DNA repair protein RAD23 (hHR23A) requires its xeroderma pigmentosum complementation group C binding (XPCB) domain as well as the ubiquitin-associated 2 (UBA2) domain.HIV-1 Vpr 蛋白与人源酵母 DNA 修复蛋白 RAD23 (hHR23A)的相互作用需要其 Xeroderma pigmentosum complementation group C binding(XPCB)结构域以及泛素相关 2(UBA2)结构域。
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本文引用的文献

1
Processing of X-ray diffraction data collected in oscillation mode.振荡模式下收集的X射线衍射数据的处理。
Methods Enzymol. 1997;276:307-26. doi: 10.1016/S0076-6879(97)76066-X.
2
Misfolding of glycoproteins is a prerequisite for peptide: N-glycanase mediated deglycosylation.糖蛋白错误折叠是肽:N-聚糖酶介导的去糖基化的前提条件。
FEBS Lett. 2005 Jan 31;579(3):823-6. doi: 10.1016/j.febslet.2004.12.060.
3
Using a small molecule inhibitor of peptide: N-glycanase to probe its role in glycoprotein turnover.使用肽:N-聚糖酶的小分子抑制剂来探究其在糖蛋白周转中的作用。
Chem Biol. 2004 Dec;11(12):1677-87. doi: 10.1016/j.chembiol.2004.11.010.
4
Roles of Rad23 protein in yeast nucleotide excision repair.Rad23蛋白在酵母核苷酸切除修复中的作用。
Nucleic Acids Res. 2004 Nov 15;32(20):5981-90. doi: 10.1093/nar/gkh934. Print 2004.
5
A complex between peptide:N-glycanase and two proteasome-linked proteins suggests a mechanism for the degradation of misfolded glycoproteins.肽:N-聚糖酶与两种蛋白酶体连接蛋白之间的复合物揭示了错误折叠糖蛋白的降解机制。
Proc Natl Acad Sci U S A. 2004 Sep 21;101(38):13774-9. doi: 10.1073/pnas.0405663101. Epub 2004 Sep 9.
6
The N-terminus of yeast peptide: N-glycanase interacts with the DNA repair protein Rad23.酵母肽:N-聚糖酶的N端与DNA修复蛋白Rad23相互作用。
Biochem Biophys Res Commun. 2004 Oct 8;323(1):149-55. doi: 10.1016/j.bbrc.2004.08.061.
7
Structure of the XPC binding domain of hHR23A reveals hydrophobic patches for protein interaction.人源HR23A蛋白XPC结合结构域的结构揭示了用于蛋白质相互作用的疏水斑块。
Protein Sci. 2004 Sep;13(9):2370-7. doi: 10.1110/ps.04824304.
8
Efficient rebuilding of protein structures.蛋白质结构的高效重建。
Acta Crystallogr D Biol Crystallogr. 1996 Jul 1;52(Pt 4):829-32. doi: 10.1107/S0907444996001783.
9
Yeast N-glycanase distinguishes between native and non-native glycoproteins.酵母N-聚糖酶能够区分天然糖蛋白和非天然糖蛋白。
EMBO Rep. 2004 Feb;5(2):201-6. doi: 10.1038/sj.embor.7400066. Epub 2004 Jan 9.
10
The crystal structure of Pseudomonas avirulence protein AvrPphB: a papain-like fold with a distinct substrate-binding site.丁香假单胞菌无毒蛋白AvrPphB的晶体结构:具有独特底物结合位点的类木瓜蛋白酶折叠结构
Proc Natl Acad Sci U S A. 2004 Jan 6;101(1):302-7. doi: 10.1073/pnas.2036536100. Epub 2003 Dec 23.

一种肽:N-聚糖酶-Rad23复合物的结构:对变性糖蛋白去糖基化作用的深入了解。

Structure of a peptide:N-glycanase-Rad23 complex: insight into the deglycosylation for denatured glycoproteins.

作者信息

Lee Jung-Hoon, Choi Jung Min, Lee Changwook, Yi Ki Joung, Cho Yunje

机构信息

National Creative Research Center for Structural Biology and Department of Life Science, Pohang University of Science and Technology, Hyo-ja dong, San 31, Pohang, KyungBook, South Korea.

出版信息

Proc Natl Acad Sci U S A. 2005 Jun 28;102(26):9144-9. doi: 10.1073/pnas.0502082102. Epub 2005 Jun 17.

DOI:10.1073/pnas.0502082102
PMID:15964983
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1166607/
Abstract

In eukaryotes, misfolded proteins must be distinguished from correctly folded proteins during folding and transport processes by quality control systems. Yeast peptide:N-glycanase (yPNGase) specifically deglycosylates the denatured form of N-linked glycoproteins in the cytoplasm and assists proteasome-mediated glycoprotein degradation by forming a complex with 26S proteasome through DNA repair protein, yRad23. Here, we describe the crystal structures of a yPNGase and XPC-binding domain of yRad23 (yRad23XBD, residues 238-309) complex and of a yPNGase-yRad23XBD complex bound to a caspase inhibitor, Z-VAD-fmk. yPNGase is formed with three domains, a core domain containing a Cys-His-Asp triad, a Zn-binding domain, and a Rad23-binding domain. Both N- and C-terminal helices of yPNGase interact with yRad23 through extensive hydrophobic interactions. The active site of yPNGase is located in a deep cleft that is formed with residues conserved in all PNGase members, and three sugar molecules are bound to this cleft. Complex structures in conjunction with mutational analyses revealed that the walls of the cleft block access to the active site of yPNGase by native glycoprotein, whereas the cleft is sufficiently wide to accommodate denatured glycoprotein, thus explaining the specificity of PNGase for denatured substrates.

摘要

在真核生物中,错误折叠的蛋白质在折叠和运输过程中必须通过质量控制系统与正确折叠的蛋白质区分开来。酵母肽:N-聚糖酶(yPNGase)特异性地使细胞质中N-连接糖蛋白的变性形式去糖基化,并通过与DNA修复蛋白yRad23形成复合物来协助蛋白酶体介导的糖蛋白降解。在此,我们描述了yPNGase与yRad23的XPC结合结构域(yRad23XBD,残基238 - 309)的复合物以及与半胱天冬酶抑制剂Z-VAD-fmk结合的yPNGase-yRad23XBD复合物的晶体结构。yPNGase由三个结构域组成,一个包含半胱氨酸-组氨酸-天冬氨酸三联体的核心结构域、一个锌结合结构域和一个Rad23结合结构域。yPNGase的N端和C端螺旋都通过广泛的疏水相互作用与yRad23相互作用。yPNGase的活性位点位于一个由所有PNGase成员中保守的残基形成的深裂缝中,并且有三个糖分子结合到这个裂缝中。结合突变分析的复合物结构表明,裂缝的壁阻止天然糖蛋白进入yPNGase的活性位点,而裂缝足够宽以容纳变性糖蛋白,从而解释了PNGase对变性底物的特异性。