School of Biological Sciences, University of Adelaide, North Terrace, Adelaide, Australia.
School of Biological Sciences, University of Adelaide, North Terrace, Adelaide, Australia.
Trends Biochem Sci. 2017 May;42(5):383-394. doi: 10.1016/j.tibs.2017.02.001. Epub 2017 Mar 3.
Protein biotinylation is a key post-translational modification found throughout the living world. The covalent attachment of a biotin cofactor onto specific metabolic enzymes is essential for their activity. This modification is distinctive, in that it is carried out by a single enzyme: biotin protein ligase (BPL), an enzyme that is able to biotinylate multiple target substrates without aberrant-off target biotinylation. BPL achieves this target selectivity by recognizing a sequence motif in the context of a highly conserved tertiary structure. One structural class of BPLs has developed an additional 'substrate verification' mechanism to further enable appropriate protein selection. This is crucial for the precise and selective biotinylation required for efficient biotin management, especially in organisms that are auxotrophic for biotin.
蛋白质生物素化是一种在整个生命世界中都存在的关键翻译后修饰。生物素辅因子与特定代谢酶的共价连接对于它们的活性至关重要。这种修饰是独特的,因为它是由单个酶完成的:生物素蛋白连接酶(BPL),这种酶能够对多个靶标底物进行生物素化,而不会出现异常的非靶标生物素化。BPL 通过识别高度保守的三级结构中的序列模体来实现这种靶标选择性。BPL 的一类结构已经开发出额外的“底物验证”机制,以进一步实现对合适蛋白质的选择。这对于需要高效生物素管理的精确和选择性生物素化至关重要,特别是对于生物素营养缺陷型的生物体。