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分子建模揭示了类脂膜内外类胡萝卜素的动态和能量学方面。

Dynamic and Energetic Aspects of Carotenoids In-and-Around Model Lipid Membranes Revealed in Molecular Modelling.

机构信息

Department of Computational Biophysics and Bioinformatics, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.

出版信息

Int J Mol Sci. 2024 Jul 27;25(15):8217. doi: 10.3390/ijms25158217.

Abstract

In contrast to plants, humans are unable to synthesise carotenoids and have to obtain them from diet. Carotenoids fulfil several crucial biological functions in the organism; however, due to poor solubility in water, their bioavailability from plant-based food is low. The processes of carotenoid absorption and availability in the human body have been intensively studied. The recent experimental findings concerning these processes are briefly presented in the introductory part of this review, together with a summary of such topics as carotenoid carriers, body transport and tissue delivery, to finally report on molecular-level studies of carotenoid binding by membrane receptors. The main message of the review is contained in the section describing computational investigations of carotenoid intercalation and dynamic behaviour in lipid bilayers. The relevance of these computational studies lies in showing the direct link between the microscopic behaviour of molecules and the characteristics of their macroscopic ensembles. Furthermore, studying the interactions between carotenoids and lipid bilayers, and certainly proteins, on the molecular- and atomic-level using computational methods facilitates the interpretation and explanation of their macroscopic properties and, hopefully, helps to better understand the biological functions of carotenoids.

摘要

与植物不同,人类无法合成类胡萝卜素,只能从饮食中获取。类胡萝卜素在生物体中发挥着几个关键的生物学功能;然而,由于其在水中的溶解度较差,它们从植物性食物中的生物利用度较低。人体中类胡萝卜素的吸收和利用过程已经得到了深入研究。本综述的引言部分简要介绍了这些过程的最新实验发现,并概述了类胡萝卜素载体、体运输和组织传递等主题,最后报告了关于膜受体与类胡萝卜素结合的分子水平研究。综述的主要信息包含在描述类胡萝卜素在脂质双层中的插入和动态行为的计算研究部分。这些计算研究的相关性在于表明分子的微观行为与其宏观集合的特征之间存在直接联系。此外,使用计算方法在分子和原子水平上研究类胡萝卜素与脂质双层,以及肯定是蛋白质之间的相互作用,有助于解释和解释它们的宏观性质,并希望有助于更好地理解类胡萝卜素的生物学功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61aa/11312187/aa6540b54da8/ijms-25-08217-g001.jpg

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