Division of Applied Biology, Faculty of Textile Science and Technology, Shinshu University, Ueda, Nagano 386-8567, Japan.
J Biol Chem. 2012 Dec 28;287(53):44736-48. doi: 10.1074/jbc.M112.414763. Epub 2012 Oct 22.
In Bacillus subtilis, LytE, LytF, CwlS, and CwlO are vegetative autolysins, DL-endopeptidases in the NlpC/P60 family, and play essential roles in cell growth and separation. IseA (YoeB) is a proteinaceous inhibitor against the DL-endopeptidases, peptidoglycan hydrolases. Overexpression of IseA caused significantly long chained cell morphology, because IseA inhibits the cell separation DL-endopeptidases post-translationally. Here, we report the first three-dimensional structure of IseA, determined by NMR spectroscopy. The structure includes a single domain consisting of three α-helices, one 3(10)-helix, and eight β-strands, which is a novel fold like a "hacksaw." Noteworthy is a dynamic loop between β4 and the 3(10)-helix, which resembles a "blade." The electrostatic potential distribution shows that most of the surface is positively charged, but the region around the loop is negatively charged. In contrast, the LytF active-site cleft is expected to be positively charged. NMR chemical shift perturbation of IseA interacting with LytF indicated that potential interaction sites are located around the loop. Furthermore, the IseA mutants D100K/D102K and G99P/G101P at the loop showed dramatic loss of inhibition activity against LytF, compared with wild-type IseA, indicating that the β4-3(10) loop plays an important role in inhibition. Moreover, we built a complex structure model of IseA-LytF by docking simulation, suggesting that the β4-3(10) loop of IseA gets stuck deep in the cleft of LytF, and the active site is occluded. These results suggest a novel inhibition mechanism of the hacksaw-like structure, which is different from known inhibitor proteins, through interactions around the characteristic loop regions with the active-site cleft of enzymes.
在枯草芽孢杆菌中,LytE、LytF、CwlS 和 CwlO 是营养期自溶素,属于 NlpC/P60 家族的 DL-内切肽酶,在细胞生长和分离中发挥重要作用。IseA(YoeB)是一种针对 DL-内切肽酶和肽聚糖水解酶的蛋白抑制剂。IseA 的过表达导致细胞形态显著变长,因为 IseA 会在翻译后抑制细胞分离的 DL-内切肽酶。本文首次报道了 IseA 的三维结构,通过 NMR 光谱确定。该结构包括一个由三个α-螺旋、一个 3(10)-螺旋和八个β-折叠组成的单一结构域,这是一种类似于“钢锯”的新型折叠。值得注意的是,β4 和 3(10)-螺旋之间的动态环类似于“刀片”。静电势分布表明,大部分表面带正电荷,但环周围的区域带负电荷。相比之下,LytF 的活性位点裂缝预计带正电荷。IseA 与 LytF 相互作用的 NMR 化学位移扰动表明,潜在的相互作用位点位于环周围。此外,与野生型 IseA 相比,环上的 D100K/D102K 和 G99P/G101P 突变体的抑制活性明显丧失,表明β4-3(10)环在抑制中起重要作用。此外,我们通过对接模拟构建了 IseA-LytF 复合物结构模型,表明 IseA 的β4-3(10)环深入嵌入 LytF 的裂缝中,使活性位点被封闭。这些结果表明了一种通过与酶的活性位点裂缝周围的特征环区相互作用的新型“钢锯”样结构抑制机制,这与已知的抑制剂蛋白不同。