Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, India.
PLoS One. 2013 May 23;8(5):e63779. doi: 10.1371/journal.pone.0063779. Print 2013.
The glycosyl hydrolase 18 (GH18) family consists of active chitinases as well as chitinase like lectins/proteins (CLPs). The CLPs share significant sequence and structural similarities with active chitinases, however, do not display chitinase activity. Some of these proteins are reported to have specific functions and carbohydrate binding property. In the present study, we report a novel chitinase like lectin (TCLL) from Tamarindus indica. The crystal structures of native TCLL and its complex with N-acetyl glucosamine were determined. Similar to the other CLPs of the GH18 members, TCLL lacks chitinase activity due to mutations of key active site residues. Comparison of TCLL with chitinases and other chitin binding CLPs shows that TCLL has substitution of some chitin binding site residues and more open binding cleft due to major differences in the loop region. Interestingly, the biochemical studies suggest that TCLL is an N-acetyl glucosamine specific chi-lectin, which is further confirmed by the complex structure of TCLL with N-acetyl glucosamine complex. TCLL has two distinct N-acetyl glucosamine binding sites S1 and S2 that contain similar polar residues, although interaction pattern with N-acetyl glucosamine varies extensively among them. Moreover, TCLL structure depicts that how plants utilize existing structural scaffolds ingenuously to attain new functions. To date, this is the first structural investigation of a chi-lectin from plants that explore novel carbohydrate binding sites other than chitin binding groove observed in GH18 family members. Consequently, TCLL structure confers evidence for evolutionary link of lectins with chitinases.
糖基水解酶 18(GH18)家族包括活性几丁质酶以及几丁质酶样凝集素/蛋白(CLPs)。CLPs 与活性几丁质酶具有显著的序列和结构相似性,但不显示几丁质酶活性。一些这些蛋白质据报道具有特定的功能和碳水化合物结合特性。在本研究中,我们报告了来自罗望子的一种新型几丁质酶样凝集素(TCLL)。测定了天然 TCLL 及其与 N-乙酰葡萄糖胺复合物的晶体结构。与 GH18 成员的其他 CLPs 一样,由于关键活性位点残基的突变,TCLL 缺乏几丁质酶活性。TCLL 与几丁质酶和其他几丁质结合 CLPs 的比较表明,由于环区的主要差异,TCLL 具有一些几丁质结合位点残基的取代和更开放的结合裂缝。有趣的是,生化研究表明 TCLL 是一种 N-乙酰葡萄糖胺特异性 chi-lectin,这通过 TCLL 与 N-乙酰葡萄糖胺复合物的复合物结构进一步得到证实。TCLL 有两个不同的 N-乙酰葡萄糖胺结合位点 S1 和 S2,它们都含有相似的极性残基,尽管与 N-乙酰葡萄糖胺的相互作用模式在它们之间有很大的差异。此外,TCLL 的结构描绘了植物如何巧妙地利用现有的结构支架来获得新的功能。迄今为止,这是对 GH18 家族成员观察到的除几丁质结合槽以外的新型碳水化合物结合位点的植物 chi-lectin 的首次结构研究。因此,TCLL 的结构为凝集素与几丁质酶的进化联系提供了证据。