Tang Ce Mun, Chye Mee-Len, Ramalingam Sathishkumar, Ouyang Shi-Wen, Zhao Kai-Jun, Ubhayasekera Wimal, Mowbray Sherry L
Department of Botany, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Plant Mol Biol. 2004 Sep;56(2):285-98. doi: 10.1007/s11103-004-3382-1.
We previously isolated a Brassica juncea cDNA encoding BjCHI1, a novel chitinase with two chitin-binding domains. Synthesis of its mRNA is induced by wounding, methyl jasmonate treatment, Aspergillus niger infection and caterpillar (Pieris rapae) feeding, suggesting that the protein has a role in defense. In that it possesses two chitin-binding domains, BjCHI1 resembles the precursor of Urtica dioica agglutinin but unlike that protein, BjCHI1 retains its chitinase catalytic domain after post-translational processing. To explore the properties of multi-domain BjCHI1, we have expressed recombinant BjCHI1 and two derivatives, which lack one (BjCHI2) or both (BjCHI3) chitin-binding domains, as secreted proteins in Pichia pastoris. Recombinant BjCHI1 and BjCHI2, showed apparent molecular masses on SDS-PAGE larger than calculated, and could be deglycosylated using alpha-mannosidase. Recombinant BjCHI3, without the proline/threonine-rich linker region containing predicted O-glycosylation sites, did not appear to be processed by alpha-mannosidase. BjCHI1's ability to agglutinate rabbit erythrocytes is unique among known chitinases. Both chitin-binding domains are essential for agglutination; this property is absent in recombinant BjCHI2 and BjCHI3. To identify potential catalytic residues, we generated site-directed mutations in recombinant BjCHI3. Mutation E212A showed the largest effect, exhibiting 0% of wild-type specific activity. H211N and R361A resulted in considerable (>91%) activity loss, implying these charged residues are also important in catalysis. E234A showed 36% retention of activity and substitution Y269D, 50%. The least affected mutants were E349A and D360A, with 73% and 68% retention, respectively. Like Y269, E349 and D360 are possibly involved in substrate binding rather than catalysis.
我们之前分离出了一个编码BjCHI1的芥菜型油菜cDNA,BjCHI1是一种具有两个几丁质结合结构域的新型几丁质酶。其mRNA的合成受创伤、茉莉酸甲酯处理、黑曲霉感染和毛虫(菜粉蝶)取食诱导,这表明该蛋白在防御中发挥作用。由于BjCHI1拥有两个几丁质结合结构域,它类似于异株荨麻凝集素的前体,但与该蛋白不同的是,BjCHI1在翻译后加工后保留了其几丁质酶催化结构域。为了探究多结构域BjCHI1的特性,我们在毕赤酵母中表达了重组BjCHI1及其两个衍生物,这两个衍生物分别缺失一个(BjCHI2)或两个(BjCHI3)几丁质结合结构域,并将其作为分泌蛋白表达。重组BjCHI1和BjCHI2在SDS-PAGE上显示的表观分子量大于计算值,并且可以用α-甘露糖苷酶进行去糖基化。重组BjCHI3没有富含脯氨酸/苏氨酸的连接区,该连接区含有预测的O-糖基化位点,似乎不能被α-甘露糖苷酶加工。BjCHI1凝集兔红细胞的能力在已知的几丁质酶中是独特的。两个几丁质结合结构域对于凝集都是必不可少的;重组BjCHI2和BjCHI3没有这种特性。为了鉴定潜在的催化残基,我们在重组BjCHI3中产生了定点突变。E212A突变的影响最大,显示出0%的野生型比活性。H211N和R361A导致相当大(>91%)的活性丧失,这意味着这些带电荷的残基在催化中也很重要。E234A显示出36%的活性保留,Y269D替代显示出50%的活性保留。受影响最小的突变体是E349A和D360A,分别保留73%和68%的活性。与Y269一样,E349和D360可能参与底物结合而非催化。