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使用平均距离图方法预测植物血红蛋白的折叠途径和动力学。

Prediction of folding pathway and kinetics among plant hemoglobins using an average distance map method.

作者信息

Nakajima Shunsuke, Alvarez-Salgado Emma, Kikuchi Takeshi, Arredondo-Peter Raúl

机构信息

Department of Bioscience and Bioinformatics, College of Information Science and Engineering, Ritsumeikan University, Shiga, Japan.

出版信息

Proteins. 2005 Nov 15;61(3):500-6. doi: 10.1002/prot.20658.

Abstract

Computational methods, such as the ADM (average distance map) method, have been developed to predict folding of homologous proteins. In this work we used the ADM method to predict the folding pathway and kinetics among selected plant nonsymbiotic (nsHb), symbiotic (Lb), and truncated (tHb) hemoglobins (Hbs). Results predicted that (1) folding of plant Hbs occurs throughout the formation of compact folding modules mostly formed by helices A, B, and C, and E, F, G, and H (folding modules A/C and E/H, respectively), and (2) primitive (moss) nsHbs fold in the C-->N direction, evolved (monocot and dicot) nsHbs fold either in the C-->N or N-->C direction, and Lbs and plant tHbs fold in the C-->N direction. We also predicted relative folding rates of plant Hbs from qualitative analyses of the stability of subdomains and classified plant Hbs into fast and moderate folding. ADM analysis of nsHbs predicted that prehelix A plays a role during folding of the N-terminal domain of Ceratodon nsHb, and that CD-loop plays a role in folding of primitive (Physcomitrella and Ceratodon) but not evolved nsHbs. Modeling of the rice Hb1 A/C and E/H modules showed that module E/H overlaps to the Mycobacterium tuberculosis HbO two-on-two folding. This observation suggests that module E/H is an ancient tertiary structure in plant Hbs.

摘要

诸如ADM(平均距离图)方法之类的计算方法已被开发出来用于预测同源蛋白质的折叠。在这项工作中,我们使用ADM方法来预测所选植物非共生(nsHb)、共生(Lb)和截短(tHb)血红蛋白(Hbs)之间的折叠途径和动力学。结果预测:(1)植物Hbs的折叠发生在主要由螺旋A、B、C以及E、F、G和H形成的紧密折叠模块的整个形成过程中(分别为折叠模块A/C和E/H),并且(2)原始(苔藓)nsHbs沿C→N方向折叠,进化后的(单子叶植物和双子叶植物)nsHbs沿C→N或N→C方向折叠,而Lbs和植物tHbs沿C→N方向折叠。我们还通过对亚结构域稳定性的定性分析预测了植物Hbs的相对折叠速率,并将植物Hbs分为快速折叠和中等折叠。对nsHbs的ADM分析预测,前螺旋A在角齿藓nsHb N端结构域的折叠过程中起作用,并且CD环在原始(小立碗藓和角齿藓)而非进化后的nsHbs的折叠中起作用。水稻Hb1的A/C和E/H模块的建模表明,模块E/H与结核分枝杆菌HbO的二聚体折叠重叠。这一观察结果表明,模块E/H是植物Hbs中的一种古老三级结构。

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