Instituto de Química, Universidad Nacional Autónoma de México, Ciudad Universitaria, México.
FEBS J. 2014 Oct;281(19):4535-54. doi: 10.1111/febs.12962. Epub 2014 Sep 6.
Plants express chitinase and chitinase-like proteins (CLPs) belonging to the glycosyl hydrolases of the GH18 and GH19 families, which exhibit varied functions. CLPs in the GH18 family have been structurally and functionally characterized; however, there are no structures available for any member of the GH19 family. In this study, two CLPs of the GH19 family from the rubber tree Hevea brasiliensis (HbCLP1 and HbCLP2) were cloned, expressed and characterized. HbCLP1 was identical to the allergen Hev b 11.0101 previously described by others, while HbCLP2 was a novel isoform exhibiting an unusual half chitin-binding domain before the catalytic domain. Sequence alignments showed that in the two proteins the catalytic residues Glu117 and Glu147 in HbCLP1 and HbCLP2, respectively, were mutated to Ala, accounting for the lack of activity. Nonetheless, both CLPs bound chitin and chitotriose (GlcNAc)3 with high affinities, as evaluated with chitin-affinity chromatography and tryptophan fluorescence experiments. The chitin-binding domains also bound chitotriose with even higher affinities. The crystal structures of the HbCLP1-isolated domains were determined at high resolution. The analysis of the crystallographic models and docking experiments using (GlcNAc)6 oligosaccharides provides evidence of the residues involved in sugar binding. Endochitinase activity was restored in both proteins by mutating residues A117E (HbCLP1) and A147E (HbCLP2); the distance between the catalytic proton donor and the catalytic nucleophile in the in silico mutated residues was 9.5 Å, as occurs in inverting enzymes. HbCLP1 and HbCLP2 were highly thermostable and exhibited antifungal activity against Alternaria alternata, suggesting their participation in plant defense mechanisms.
植物表达几丁质酶和几丁质酶样蛋白(CLP),属于糖苷水解酶 GH18 和 GH19 家族,具有多种功能。GH18 家族的 CLP 结构和功能已经得到了充分的研究;然而,GH19 家族的任何成员都没有结构信息。在本研究中,从橡胶树(Hevea brasiliensis)中克隆、表达并鉴定了 GH19 家族的两个 CLP(HbCLP1 和 HbCLP2)。HbCLP1 与之前其他人描述的过敏原 Hev b 11.0101 完全相同,而 HbCLP2 是一个新的同工型,在催化结构域之前具有不寻常的半几丁质结合结构域。序列比对表明,在这两种蛋白中,分别位于 HbCLP1 和 HbCLP2 的催化残基 Glu117 和 Glu147 突变为 Ala,导致缺乏活性。尽管如此,两种 CLP 都能以高亲和力结合几丁质和壳三糖(GlcNAc)3,这通过几丁质亲和层析和色氨酸荧光实验得到了评估。几丁质结合结构域也能以更高的亲和力结合壳三糖。HbCLP1 分离结构域的晶体结构以高分辨率确定。利用(GlcNAc)6 寡糖进行晶体结构分析和对接实验,为糖结合涉及的残基提供了证据。通过突变残基 A117E(HbCLP1)和 A147E(HbCLP2),在两种蛋白中恢复了内切几丁质酶活性;在计算机模拟突变残基中,催化质子供体和催化亲核体之间的距离为 9.5 Å,这与反转酶一致。HbCLP1 和 HbCLP2 具有高度热稳定性,并对Alternaria alternata 表现出抗真菌活性,这表明它们参与了植物防御机制。