Department of Chemistry, College of Science, Huazhong Agricultural University, Wuhan, China.
State Key Laboratory of Magnetic Resonance and Atomic Molecular Physics, Key Laboratory of Magnetic Resonance in Biological Systems, National Center for Magnetic Resonance in Wuhan, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan, China.
Proteins. 2020 Jan;88(1):237-241. doi: 10.1002/prot.25771. Epub 2019 Jul 17.
Protein CGL2373 from Corynebacterium glutamicum was previously proposed to be a member of the polyketide_cyc2 family, based on amino-acid sequence and secondary structure features derived from NMR chemical shift assignments. We report here the solution NMR structure of CGL2373, which contains three α-helices and one antiparallel β-sheet and adopts a helix-grip fold. This structure shows moderate similarities to the representative polyketide cyclases, TcmN, WhiE, and ZhuI. Nevertheless, unlike the structures of these homologs, CGL2373 structure looks like a half-open shell with a much larger pocket, and key residues in the representative polyketide cyclases for binding substrate and catalyzing aromatic ring formation are replaced with different residues in CGL2373. Also, the gene cluster where the CGL2373-encoding gene is located in C. glutamicum contains additional genes encoding nucleoside diphosphate kinase, folylpolyglutamate synthase, and valine-tRNA ligase, different from the typical gene cluster encoding polyketide cyclase in Streptomyces. Thus, although CGL2373 is structurally a polyketide cyclase-like protein, the function of CGL2373 may differ from the known polyketide cyclases and needs to be further investigated. The solution structure of CGL2373 lays a foundation for in silico ligand screening and binding site identifying in future functional study.
来自谷氨酸棒杆菌的蛋白 CGL2373 先前被提议为聚酮_cyc2 家族的成员,这是基于从 NMR 化学位移分配中得出的氨基酸序列和二级结构特征。我们在此报告 CGL2373 的溶液 NMR 结构,其包含三个α-螺旋和一个反平行β-折叠,并采用螺旋夹折迭构象。该结构与代表性的聚酮合酶 TcmN、WhiE 和 ZhuI 显示出中等相似性。然而,与这些同源物的结构不同,CGL2373 的结构看起来像一个半开的壳,具有更大的口袋,并且在代表性的聚酮合酶中用于结合底物和催化芳环形成的关键残基被 CGL2373 中的不同残基取代。此外,C. glutamicum 中包含 CGL2373 编码基因的基因簇还包含编码核苷二磷酸激酶、叶酸多聚谷氨酸合酶和缬氨酸-tRNA 连接酶的额外基因,这与链霉菌中典型的聚酮合酶基因簇不同。因此,尽管 CGL2373 在结构上是一种聚酮合酶样蛋白,但 CGL2373 的功能可能与已知的聚酮合酶不同,需要进一步研究。CGL2373 的溶液结构为未来功能研究中的计算机配体筛选和结合位点鉴定奠定了基础。