Chen Lei, Zhou Yong, Qu Mingbo, Zhao Yong, Yang Qing
From the School of Life Science and Biotechnology, Dalian University of Technology, 2 Linggong Road, Dalian, Liaoning 116024, China.
the School of Software, Dalian University of Technology, Dalian 116620, China, and.
J Biol Chem. 2014 Jun 20;289(25):17932-40. doi: 10.1074/jbc.M114.564534. Epub 2014 May 14.
Small molecule inhibitors against chitinases have potential applications as pesticides, fungicides, and antiasthmatics. Here, we report that a series of fully deacetylated chitooligosaccharides (GlcN)2-7 can act as inhibitors against the insect chitinase OfChtI, the human chitinase HsCht, and the bacterial chitinases SmChiA and SmChiB with IC50 values at micromolar to millimolar levels. The injection of mixed (GlcN)2-7 into the fifth instar larvae of the insect Ostrinia furnacalis resulted in 85% of the larvae being arrested at the larval stage and death after 10 days, also suggesting that (GlcN)2-7 might inhibit OfChtI in vivo. Crystal structures of the catalytic domain of OfChtI (OfChtI-CAD) complexed with (GlcN)5,6 were obtained at resolutions of 2.0 Å. These structures, together with mutagenesis and thermodynamic analysis, suggested that the inhibition was strongly related to the interaction between the -1 GlcN residue of the inhibitor and the catalytic Glu(148) of the enzyme. Structure-based comparison showed that the fully deacetylated chitooligosaccharides mimic the substrate chitooligosaccharides by binding to the active cleft. This work first reports the inhibitory activity and proposed inhibitory mechanism of fully deacetylated chitooligosaccharides. Because the fully deacetylated chitooligosaccharides can be easily derived from chitin, one of the most abundant materials in nature, this work also provides a platform for developing eco-friendly inhibitors against chitinases.
针对几丁质酶的小分子抑制剂在作为杀虫剂、杀菌剂和抗哮喘药方面具有潜在应用。在此,我们报告一系列完全脱乙酰化的壳寡糖(GlcN)2-7可作为昆虫几丁质酶OfChtI、人几丁质酶HsCht以及细菌几丁质酶SmChiA和SmChiB的抑制剂,其半数抑制浓度(IC50)值处于微摩尔至毫摩尔水平。将混合的(GlcN)2-7注射到昆虫亚洲玉米螟的五龄幼虫体内,导致85%的幼虫停滞在幼虫阶段,并在10天后死亡,这也表明(GlcN)2-7可能在体内抑制OfChtI。获得了与(GlcN)5,6复合的OfChtI催化结构域(OfChtI-CAD)的晶体结构,分辨率为2.0 Å。这些结构,连同诱变和热力学分析表明,抑制作用与抑制剂的-位GlcN残基与酶的催化性谷氨酸(Glu(148))之间的相互作用密切相关。基于结构的比较表明,完全脱乙酰化的壳寡糖通过结合到活性裂隙来模拟底物壳寡糖。这项工作首次报道了完全脱乙酰化壳寡糖的抑制活性及提出的抑制机制。由于完全脱乙酰化的壳寡糖可轻易从自然界中最丰富的物质之一几丁质衍生而来,这项工作还为开发针对几丁质酶的生态友好型抑制剂提供了一个平台。