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人 GLTP:新型外周两性折叠中三个色氨酸的三种不同功能。

Human GLTP: Three distinct functions for the three tryptophans in a novel peripheral amphitropic fold.

机构信息

The Hormel Institute, University of Minnesota, Austin, USA.

出版信息

Biophys J. 2010 Oct 20;99(8):2626-35. doi: 10.1016/j.bpj.2010.08.038.

DOI:10.1016/j.bpj.2010.08.038
PMID:20959104
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2955354/
Abstract

Human glycolipid transfer protein (GLTP) serves as the GLTP-fold prototype, a novel, to our knowledge, peripheral amphitropic fold and structurally unique lipid binding motif that defines the GLTP superfamily. Despite conservation of all three intrinsic Trps in vertebrate GLTPs, the Trp functional role(s) remains unclear. Herein, the issue is addressed using circular dichroism and fluorescence spectroscopy along with an atypical Trp point mutation strategy. Far-ultraviolet and near-ultraviolet circular dichroism spectroscopic analyses showed that W96F-W142Y-GLTP and W96Y-GLTP retain their native conformation and stability, whereas W85Y-W96F-GLTP is slightly altered, in agreement with relative glycolipid transfer activities of >90%, ∼85%, and ∼45%, respectively. In silico three-dimensional modeling and acrylamide quenching of Trp fluorescence supported a nativelike folding conformation. With the Trp⁹⁶-less mutants, changes in emission intensity, wavelength maximum, lifetime, and time-resolved anisotropy decay induced by phosphoglyceride membranes lacking or containing glycolipid and by excitation at different wavelengths along the absorption-spectrum red edge indicated differing functions for W142 and W85. The data suggest that W142 acts as a shallow-penetration anchor during docking with membrane interfaces, whereas the buried W85 indole helps maintain proper folding and possibly regulates membrane-induced transitioning to a glycolipid-acquiring conformation. The findings illustrate remarkable versatility for Trp, providing three distinct intramolecular functions in the novel amphitropic GLTP fold.

摘要

人糖脂转移蛋白 (GLTP) 是 GLTP 折叠原型,是一种新型的、我们所知的外周两性折叠结构和独特的脂质结合基序,定义了 GLTP 超家族。尽管脊椎动物 GLTP 中所有三个内在色氨酸都保守,但色氨酸的功能作用仍不清楚。在此,使用圆二色性和荧光光谱以及一种非典型色氨酸点突变策略来解决这个问题。远紫外和近紫外圆二色光谱分析表明,W96F-W142Y-GLTP 和 W96Y-GLTP 保留其天然构象和稳定性,而 W85Y-W96F-GLTP 略有改变,与相对的糖脂转移活性分别为>90%、∼85%和∼45%一致。三维计算机建模和色氨酸荧光的丙烯酰胺猝灭支持天然折叠构象。对于色氨酸⁹⁶缺失突变体,缺乏或含有糖脂的磷酯质膜以及在吸收光谱红边的不同波长处激发引起的发射强度、波长最大值、寿命和时间分辨各向异性衰减的变化表明 W142 和 W85 的功能不同。数据表明,W142 在与膜界面对接时充当浅渗透锚,而埋藏的 W85 吲哚有助于维持正确的折叠,并可能调节膜诱导向获取糖脂的构象转变。这些发现说明了色氨酸的显著多功能性,在新型两性 GLTP 折叠中提供了三种不同的分子内功能。

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本文引用的文献

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Structural determination and tryptophan fluorescence of heterokaryon incompatibility C2 protein (HET-C2), a fungal glycolipid transfer protein (GLTP), provide novel insights into glycolipid specificity and membrane interaction by the GLTP fold.真菌糖脂转移蛋白(GLTP)异核不亲和性 C2 蛋白(HET-C2)的结构测定和色氨酸荧光为 GLTP 折叠提供了糖脂特异性和膜相互作用的新见解。
J Biol Chem. 2010 Apr 23;285(17):13066-78. doi: 10.1074/jbc.M109.093203. Epub 2010 Feb 17.
2
Detection of discriminative sequence patterns in the neighborhood of proline cis peptide bonds and their functional annotation.脯氨酸顺式肽键附近鉴别性序列模式的检测及其功能注释。
BMC Bioinformatics. 2009 Apr 20;10:113. doi: 10.1186/1471-2105-10-113.
3
Glycolipid acquisition by human glycolipid transfer protein dramatically alters intrinsic tryptophan fluorescence: insights into glycolipid binding affinity.人糖脂转移蛋白对糖脂的摄取显著改变了色氨酸的固有荧光:对糖脂结合亲和力的见解。
J Biol Chem. 2009 May 15;284(20):13620-13628. doi: 10.1074/jbc.M809089200. Epub 2009 Mar 7.
4
Glycolipid transfer proteins and membrane interaction.糖脂转移蛋白与膜相互作用。
Biochim Biophys Acta. 2009 Jan;1788(1):267-72. doi: 10.1016/j.bbamem.2008.10.003. Epub 2008 Oct 25.
5
Another role of proline: stabilization interactions in proteins and protein complexes concerning proline and tryptophane.脯氨酸的另一个作用:涉及脯氨酸和色氨酸的蛋白质及蛋白质复合物中的稳定相互作用。
Phys Chem Chem Phys. 2008 Nov 14;10(42):6350-9. doi: 10.1039/b805087b. Epub 2008 Sep 11.
6
Human glycolipid transfer protein (GLTP) genes: organization, transcriptional status and evolution.人类糖脂转移蛋白(GLTP)基因:结构、转录状态及进化
BMC Genomics. 2008 Feb 8;9:72. doi: 10.1186/1471-2164-9-72.
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Membrane recognition by phospholipid-binding domains.磷脂结合结构域对膜的识别
Nat Rev Mol Cell Biol. 2008 Feb;9(2):99-111. doi: 10.1038/nrm2328.
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Glycolipid transfer protein: clear structure and activity, but enigmatic function.糖脂转移蛋白:结构与活性明确,但功能神秘。
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