Tsurumura Toshiharu, Tsuge Hideaki
Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo-Motoyama, Kita-ku, Kyoto, 603-8555, Japan,
J Struct Funct Genomics. 2014 Sep;15(3):83-9. doi: 10.1007/s10969-014-9181-2. Epub 2014 Jun 4.
Lipases, which are conserved from bacteria to mammals, catalyze the hydrolysis of acylglycerol to free fatty acids and glycerol. Monoacylglycerol lipase (MGL) specifically catalyzes the hydrolysis of monoacylglycerol. Although there have been numerous studies of the structure of lipases, there have been few studies of MGL. Here, we report the crystal structure of authentic MGL isolated from Bacillus sp. H257 (bMGL). The crystal diffracts to 1.96 Å resolution. It belongs to space group P21212, and the unit cell parameters are a=99.7 Å, b=106.1 Å and c=43.0 Å. As in other lipases, three structural features for lipase activity are conserved in bMGL: the glycine-X-serine-X-glycine motif, catalytic triad and cap region. The structure of bMGL appears to be closed, as the cap region covers the active site entrance. The isolated bMGL hydrolyzed 2-AG, a known human MGL-specific substrate. Based on a 2-AG bound model, we discuss the substrate selectivity. The functional and structural features of bMGL provide insight how its substrate selectivity is determined and how specific inhibitors of bacterial MGL could be designed, which may be useful for development of novel antibiotics.
脂肪酶在从细菌到哺乳动物的生物中都保守存在,它催化酰基甘油水解为游离脂肪酸和甘油。单酰基甘油脂肪酶(MGL)特异性催化单酰基甘油的水解。尽管对脂肪酶的结构已有众多研究,但对MGL的研究却很少。在此,我们报道了从芽孢杆菌属H257(bMGL)中分离得到的天然MGL的晶体结构。该晶体的衍射分辨率为1.96 Å。它属于空间群P21212,晶胞参数为a = 99.7 Å、b = 106.1 Å和c = 43.0 Å。与其他脂肪酶一样,bMGL中脂肪酶活性的三个结构特征得以保留:甘氨酸-X-丝氨酸-X-甘氨酸基序、催化三联体和帽区。由于帽区覆盖了活性位点入口,bMGL的结构似乎是封闭的。分离得到的bMGL水解了2-AG,这是一种已知的人类MGL特异性底物。基于一个2-AG结合模型,我们讨论了底物选择性。bMGL的功能和结构特征为其底物选择性是如何确定的以及如何设计细菌MGL的特异性抑制剂提供了见解,这可能有助于新型抗生素的开发。