Botany Division, Institute of Pure and Applied Biology, Bahauddin Zakariya University, Multan, Pakistan.
TUM School of Life Sciences Weihenstephan, Technical University of Munich, Germany.
Kaohsiung J Med Sci. 2018 Dec;34(12):673-683. doi: 10.1016/j.kjms.2018.08.003. Epub 2018 Oct 12.
The present study describes the predicted model and functional characterization of an endochitinase (30 kDa) from corms of Gladiolus grandiflorus. ESI-QTOF-MS generated peptide showed 96% sequence homology with family 18, Class III acidic endochitinase of Gladiolus gandavensis. Purified G. grandiflorus chitinase (GgChi) hydrolyzed 4-methylumbelliferyl β-d-N,N',N''-triacetylchitotriose substrate showing specific endochitinase activity. Since no structural details of GgChi were available in the Protein Data Bank (PDB), a homology model was predicted using the coordinate information of Crocus vernus chitinase (PDB ID: 3SIM). Ramachandran plot indicated 84.5% in most favored region, 14.8% in additional and 0.6% in generously allowed region while no residue in disallowed region. The predicted structure indicated a highly conserved (β/α) (TIM barrel) structure similar to the family 18, class III chitinases. The GgChi also showed sequence and structural homologies with other active chitinases. The GgChi (50 μg/disc) showed no antibacterial activity, but did provide mild growth inhibition of phytopathogenic fungus Fusarium oxysporum at a concentration of 500 μg/well Similarly, insect toxicity bioassays of GgChi (50 μg) against nymphs of Bemisia tabaci showed 14% reduction in adult emergence and 14% increase in mortality rate in comparison to control values. The GgChi (1.5 mg) protein showed significant reduction in a population of flour beetle (Tribolium castaneum) after 35 days, but lower reactivity against rice weevil (Sitophilus oryzae). The results of this study provide detai.led insight on functional characterization of a family 18 class III acidic plant endochitinase.
本研究描述了来自唐菖蒲球茎的内几丁质酶(30 kDa)的预测模型和功能特征。ESI-QTOF-MS 生成的肽与唐菖蒲 gandavensis 的 18 家族、III 类酸性内切几丁质酶显示出 96%的序列同源性。纯化的唐菖蒲内切几丁质酶(GgChi)水解 4-甲基伞形酮-β-d-N,N',N''-三乙酰壳三糖底物,显示出特异的内切几丁质酶活性。由于唐菖蒲 gandavensis 的 GgChi 结构细节在蛋白质数据银行(PDB)中不可用,因此使用藏红花内几丁质酶(PDB ID:3SIM)的坐标信息预测了同源模型。Ramachandran 图表明,84.5%处于最有利区域,14.8%处于额外区域,0.6%处于慷慨允许区域,而没有残基处于不允许区域。预测的结构表明,高度保守的(β/α)(TIM 桶)结构类似于 18 家族、III 类几丁质酶。GgChi 还显示出与其他活性几丁质酶的序列和结构同源性。GgChi(50 μg/disc)没有显示出抗菌活性,但在 500 μg/孔的浓度下确实对植物病原菌尖孢镰刀菌提供了轻微的生长抑制。同样,对 50μg GgChi 的烟粉虱若虫的昆虫毒性生物测定显示,与对照值相比,成虫出现率降低 14%,死亡率增加 14%。GgChi(1.5 mg)蛋白在 35 天后对粉斑螟(Tribolium castaneum)种群显示出显著降低,但对水稻象鼻虫(Sitophilus oryzae)的反应性较低。本研究的结果提供了详细的家族 18 类 III 酸性植物内切几丁质酶功能特征的见解。