UCLA-Molecular Biology Institute, University of California, Los Angeles (UCLA), California, Los Angeles, USA.
Department of Chemistry and Biochemistry, University of California, Los Angeles (UCLA), California, Los Angeles, USA.
Protein Sci. 2020 Nov;29(11):2201-2212. doi: 10.1002/pro.3941. Epub 2020 Sep 14.
Bacterial microcompartments are protein-based organelles that carry out specialized metabolic functions in diverse bacteria. Their outer shells are built from several thousand protein subunits. Some of the architectural principles of bacterial microcompartments have been articulated, with lateral packing of flat hexameric BMC proteins providing the basic foundation for assembly. Nonetheless, a complete understanding has been elusive, partly owing to polymorphic mechanisms of assembly exhibited by most microcompartment types. An earlier study of one homologous BMC shell protein subfamily, EutS/PduU, revealed a profoundly bent, rather than flat, hexameric structure. The possibility of a specialized architectural role was hypothesized, but artifactual effects of crystallization could not be ruled out. Here we report a series of crystal structures of an orthologous protein, CutR, from a glycyl-radical type choline-utilizing microcompartment from the bacterium Streptococcus intermedius. Depending on crystal form, expression construct, and minor mutations, a range of novel quaternary architectures was observed, including two spiral hexagonal assemblies. A new graphical approach helps illuminate the variations in BMC hexameric structure, with results substantiating the idea that the EutS/PduU/CutR subfamily of BMC proteins may endow microcompartment shells with flexible modes of assembly.
细菌微室是一种基于蛋白质的细胞器,在不同的细菌中执行专门的代谢功能。它们的外壳由几千个蛋白质亚基组成。细菌微室的一些结构原则已经被阐明,其中扁六聚体 BMC 蛋白的侧向堆积为组装提供了基本基础。尽管如此,由于大多数微室类型表现出多态性的组装机制,因此仍然难以完全理解。早先对同源 BMC 壳蛋白亚家族 EutS/PduU 的一项研究表明,其六聚体结构是深度弯曲的,而不是扁平的。有人假设了一种特殊的结构作用,但不能排除结晶的人为影响。在这里,我们报告了来自中间链球菌糖基自由基型胆碱利用微室的一种同源蛋白 CutR 的一系列晶体结构。根据晶体形式、表达构建体和微小突变,观察到一系列新的四元结构,包括两种螺旋六方组装体。一种新的图形方法有助于阐明 BMC 六聚体结构的变化,结果证实了 EutS/PduU/CutR 亚家族 BMC 蛋白可能为微室外壳赋予灵活的组装方式的观点。