Thompson Michael C, Wheatley Nicole M, Jorda Julien, Sawaya Michael R, Gidaniyan Soheil D, Ahmed Hoda, Yang Zhongyu, McCarty Krystal N, Whitelegge Julian P, Yeates Todd O
Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095, USA.
Molecular Biology Interdepartmental Ph.D. Program, University of California, Los Angeles, CA 90095, USA.
J Mol Biol. 2014 Sep 23;426(19):3287-3304. doi: 10.1016/j.jmb.2014.07.018. Epub 2014 Aug 4.
Recently, progress has been made toward understanding the functional diversity of bacterial microcompartment (MCP) systems, which serve as protein-based metabolic organelles in diverse microbes. New types of MCPs have been identified, including the glycyl-radical propanediol (Grp) MCP. Within these elaborate protein complexes, BMC-domain shell proteins [bacterial microcompartment (in reference to the shell protein domain)] assemble to form a polyhedral barrier that encapsulates the enzymatic contents of the MCP. Interestingly, the Grp MCP contains a number of shell proteins with unusual sequence features. GrpU is one such shell protein whose amino acid sequence is particularly divergent from other members of the BMC-domain superfamily of proteins that effectively defines all MCPs. Expression, purification, and subsequent characterization of the protein showed, unexpectedly, that it binds an iron-sulfur cluster. We determined X-ray crystal structures of two GrpU orthologs, providing the first structural insight into the homohexameric BMC-domain shell proteins of the Grp system. The X-ray structures of GrpU, both obtained in the apo form, combined with spectroscopic analyses and computational modeling, show that the metal cluster resides in the central pore of the BMC shell protein at a position of broken 6-fold symmetry. The result is a structurally polymorphic iron-sulfur cluster binding site that appears to be unique among metalloproteins studied to date.
最近,在了解细菌微区室(MCP)系统的功能多样性方面取得了进展,该系统在多种微生物中作为基于蛋白质的代谢细胞器发挥作用。已鉴定出新型的MCP,包括甘氨酰自由基丙二醇(Grp)MCP。在这些精巧的蛋白质复合物中,BMC结构域外壳蛋白[细菌微区室(指外壳蛋白结构域)]组装形成一个多面体屏障,包裹着MCP的酶成分。有趣的是,Grp MCP包含许多具有异常序列特征的外壳蛋白。GrpU就是这样一种外壳蛋白,其氨基酸序列与有效定义所有MCP的BMC结构域超家族的其他成员特别不同。该蛋白的表达、纯化及后续表征意外地表明它结合了一个铁硫簇。我们测定了两种GrpU直系同源物的X射线晶体结构,首次提供了对Grp系统同六聚体BMC结构域外壳蛋白的结构见解。以脱辅基形式获得的两种GrpU的X射线结构,结合光谱分析和计算建模,表明金属簇位于BMC外壳蛋白的中心孔中,处于六重对称被破坏的位置。结果是一个结构多态的铁硫簇结合位点,这在迄今为止研究的金属蛋白中似乎是独一无二的。