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利用同步加速器足迹法可视化凝溶胶蛋白的钙离子依赖性激活。

Visualizing the Ca2+-dependent activation of gelsolin by using synchrotron footprinting.

作者信息

Kiselar Janna G, Janmey Paul A, Almo Steven C, Chance Mark R

机构信息

Department of Physiology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461-1602, USA.

出版信息

Proc Natl Acad Sci U S A. 2003 Apr 1;100(7):3942-7. doi: 10.1073/pnas.0736004100. Epub 2003 Mar 24.

Abstract

Radiolytic protein footprinting with a synchrotron source is used to reveal detailed structural changes that occur in the Ca(2+)-dependent activation of gelsolin. More than 80 discrete peptides segments within the structure, covering 95% of the sequence in the molecule, were examined by footprinting and mass spectrometry for their solvent accessibility as a function of Ca(2+) concentration in solution. Twenty-two of the peptides exhibited detectable oxidation; for seven the oxidation extent was seen to be Ca(2+) sensitive. Ca(2+)titration isotherms monitoring the oxidation within residues 49-72 (within subdomain S1), 121-135 (S1), 162-166 (S2), and 722-748 (S6) indicate a three-state activation process with a intermediate that was populated at a Ca(2+) concentration of 1-5 microM that is competent for capping and severing activity. A second structural transition with a midpoint of approximately 60-100 microM, where the accessibility of the above four peptides is further increased, is also observed. Tandem mass spectrometry showed that buried residues within the helical "latch" of S6 (including Pro-745) that contact an F-actin-binding site on S2 and buried F-actin-binding residues within S2 (including Phe-163) are unmasked in the submicromolar Ca(2+) transition. However, residues within S4 that are part of an extended beta-sheet with S6 (including Tyr-453) are revealed only in the subsequent transition at higher Ca(2+) concentrations; the disruption of this extended contact between S4 and S6 (and likely the analogous contact between S1 and S3) likely results in an extended structure permitting additional functions consistent with the fully activated gelsolin molecule.

摘要

利用同步辐射源进行的辐射分解蛋白质足迹分析,用于揭示凝溶胶蛋白在钙离子依赖性激活过程中发生的详细结构变化。通过足迹分析和质谱法,检测了该结构内80多个离散肽段(覆盖分子中95%的序列)在溶液中作为钙离子浓度函数的溶剂可及性。22个肽段表现出可检测到的氧化;其中7个肽段的氧化程度对钙离子敏感。监测49 - 72位残基(在亚结构域S1内)、121 - 135位残基(S1)、162 - 166位残基(S2)和722 - 748位残基(S6)内氧化的钙离子滴定等温线表明,存在一个三态激活过程,其中间态在1 - 5微摩尔的钙离子浓度下出现,该中间态具有帽化和切断活性。还观察到第二个结构转变,中点约为60 - 100微摩尔,此时上述四个肽段的可及性进一步增加。串联质谱显示,在亚微摩尔钙离子转变中,S6螺旋“锁扣”内与S2上的F - 肌动蛋白结合位点接触的埋藏残基(包括Pro - 745)以及S2内埋藏的F - 肌动蛋白结合残基(包括Phe - 163)被暴露。然而,与S6形成延伸β折叠的S4内的残基(包括Tyr - 453)仅在随后更高钙离子浓度的转变中才被暴露;S4与S6之间这种延伸接触(以及可能S1与S3之间的类似接触)的破坏可能导致结构延伸,从而允许与完全激活的凝溶胶蛋白分子一致的其他功能。

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引用本文的文献

本文引用的文献

4
Ca2+ regulation of gelsolin by its C-terminal tail.
J Biol Chem. 2000 Sep 8;275(36):27746-52. doi: 10.1074/jbc.M003732200.
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Probing the effects of calcium on gelsolin.探究钙对凝溶胶蛋白的影响。
Biochemistry. 1997 Dec 16;36(50):15848-55. doi: 10.1021/bi972192p.

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