Hao Tong, Ma Hong-Wu, Zhao Xue-Ming, Goryanin Igor
Department of Biochemical Engineering, School of Chemical Engineering & Technology, Tianjin University, Tianjin, China.
Mol Biosyst. 2012 Feb;8(2):663-70. doi: 10.1039/c1mb05369h. Epub 2011 Dec 19.
Human tissues have distinct biological functions. Many proteins/enzymes are known to be expressed only in specific tissues and therefore the metabolic networks in various tissues are different. Though high quality global human metabolic networks and metabolic networks for certain tissues such as liver have already been studied, a systematic study of tissue specific metabolic networks for all main tissues is still missing. In this work, we reconstruct the tissue specific metabolic networks for 15 main tissues in human based on the previously reconstructed Edinburgh Human Metabolic Network (EHMN). The tissue information is firstly obtained for enzymes from Human Protein Reference Database (HPRD) and UniprotKB databases and transfers to reactions through the enzyme-reaction relationships in EHMN. As our knowledge of tissue distribution of proteins is still very limited, we replenish the tissue information of the metabolic network based on network connectivity analysis and thorough examination of the literature. Finally, about 80% of proteins and reactions in EHMN are determined to be in at least one of the 15 tissues. To validate the quality of the tissue specific network, the brain specific metabolic network is taken as an example for functional module analysis and the results reveal that the function of the brain metabolic network is closely related with its function as the centre of the human nervous system. The tissue specific human metabolic networks are available at .
人体组织具有独特的生物学功能。许多蛋白质/酶仅在特定组织中表达,因此不同组织中的代谢网络也不同。尽管高质量的全球人类代谢网络以及某些组织(如肝脏)的代谢网络已经得到研究,但针对所有主要组织的组织特异性代谢网络的系统研究仍然缺失。在这项工作中,我们基于先前构建的爱丁堡人类代谢网络(EHMN),构建了人类15种主要组织的组织特异性代谢网络。首先从人类蛋白质参考数据库(HPRD)和UniprotKB数据库中获取酶的组织信息,并通过EHMN中的酶-反应关系将其转换为反应。由于我们对蛋白质组织分布的了解仍然非常有限,我们基于网络连通性分析和对文献的深入研究来补充代谢网络的组织信息。最后,确定EHMN中约80%的蛋白质和反应存在于15种组织中的至少一种。为了验证组织特异性网络的质量,以脑特异性代谢网络为例进行功能模块分析,结果表明脑代谢网络的功能与其作为人类神经系统中心的功能密切相关。组织特异性人类代谢网络可在……获取。