Falb Nikolaus, Patil Gaurav, Furtmüller Paul G, Gabler Thomas, Hofbauer Stefan
University of Natural Resources and Life Sciences, Vienna, Department of Chemistry, Institute of Biochemistry, Muthgasse 18, A-1190 Vienna, Austria.
Comput Struct Biotechnol J. 2023 Jul 24;21:3933-3945. doi: 10.1016/j.csbj.2023.07.024. eCollection 2023.
The coproporphyrin dependent heme biosynthesis pathway is almost exclusively utilized by Gram-positive bacteria. This fact makes it a worthwhile topic for basic research, since a fundamental understanding of a metabolic pathway is necessary to translate the focus towards medical biotechnology, which is very relevant in this specific case, considering the need for new antibiotic targets to counteract the pathogenicity of Gram-positive superbugs. Over the years a lot of structural data on the set of enzymes acting in Gram-positive heme biosynthesis has accumulated in the Protein Database (www.pdb.org). One major challenge is to filter and analyze all available structural information in sufficient detail in order to be helpful and to draw conclusions. Here we pursued to give a holistic overview of structural information on enzymes involved in the coproporphyrin dependent heme biosynthesis pathway. There are many aspects to be extracted from experimentally determined structures regarding the reaction mechanisms, where the smallest variation of the position of an amino acid residue might be important, but also on a larger level regarding protein-protein interactions, where the focus has to be on surface characteristics and subunit (secondary) structural elements and oligomerization. This review delivers a status quo, highlights still missing information, and formulates future research endeavors in order to better understand prokaryotic heme biosynthesis.
依赖粪卟啉的血红素生物合成途径几乎仅被革兰氏阳性菌所利用。鉴于对代谢途径的基本理解是将研究重点转向医学生物技术的必要条件,而在这种特定情况下,考虑到需要新的抗生素靶点来对抗革兰氏阳性超级细菌的致病性,这一事实使得它成为基础研究中一个值得关注的课题。多年来,蛋白质数据库(www.pdb.org)中积累了大量关于革兰氏阳性菌血红素生物合成中一系列酶的结构数据。一个主要挑战是要足够详细地筛选和分析所有可用的结构信息,以便从中得出有用的结论。在此,我们试图对依赖粪卟啉的血红素生物合成途径中相关酶的结构信息进行全面概述。从实验测定的结构中可以提取出许多关于反应机制的方面,其中氨基酸残基位置的最小变化可能都很重要,而且在更大层面上,关于蛋白质 - 蛋白质相互作用,重点必须放在表面特征、亚基(二级)结构元件和寡聚化上。本综述呈现了现状,突出了仍缺失的信息,并阐述了未来的研究方向,以便更好地理解原核生物血红素生物合成。