Brunner F, Stintzi A, Fritig B, Legrand M
Institut de Biologie Moléculaire des Plantes du CNRS, Strasbourg, France.
Plant J. 1998 Apr;14(2):225-34. doi: 10.1046/j.1365-313x.1998.00116.x.
Ten tobacco chitinases (1,4-N-acetyl-beta-D-glucosaminide glycanhydrolase, EC 3.2.1.14) were purified from tobacco leaves hypersensitively reacting to tobacco mosaic virus. The 10 enzymes, which belong to five distinct structural classes of plant chitinases, were incubated with several potential substrates such as chitin, a beta-1,4 N-acetyl-D-glucosamine (GlcNAc) polymer, chitosan (partially deacetylated chitin), chitin oligomers of variable length and bacterial cell wall. Tobacco chitinases are all endotype enzymes that liberate oligomers from chitin and are capable of processing the chito-oligomers further at differential rates. Chitin reaction products were separated and quantified by HPLC and differential kinetics of oligomer accumulation and degradation were observed with the distinct classes of chitinases. Depending on the substrate to be hydrolysed, each isoform displayed a different spectrum of activity. For example, class I isoforms were the most active on chitin and (GlcNAc)4-6 whereas class III basic isoforms were the most efficient in inducing bacterial lysis. Class V and class VI chitinases were shown to more readily hydrolyse chitin oligomers than the chitin polymer itself. Together, these data indicate that the 10 tobacco chitinases represent complementary enzymes which may have synergistic effects on their substrates. This paper discusses their implication in plant defense by attacking pathogen's structural components and in plant development by maturing signal molecules.
从对烟草花叶病毒产生过敏反应的烟草叶片中纯化出了10种烟草几丁质酶(1,4-N-乙酰-β-D-氨基葡萄糖聚糖水解酶,EC 3.2.1.14)。这10种酶属于植物几丁质酶的五个不同结构类别,它们与几种潜在底物一起孵育,这些底物包括几丁质(一种β-1,4 N-乙酰-D-氨基葡萄糖(GlcNAc)聚合物)、壳聚糖(部分脱乙酰化的几丁质)、不同长度的几丁质寡聚物以及细菌细胞壁。烟草几丁质酶均为内切型酶,可从几丁质中释放寡聚物,并能够以不同速率进一步处理几丁质寡聚物。通过高效液相色谱法分离并定量几丁质反应产物,并观察到不同类别的几丁质酶在寡聚物积累和降解方面的差异动力学。根据要水解的底物不同,每种同工型表现出不同的活性谱。例如,I类同工型对几丁质和(GlcNAc)4-6活性最高,而III类碱性同工型在诱导细菌裂解方面效率最高。已表明V类和VI类几丁质酶比几丁质聚合物本身更容易水解几丁质寡聚物。总之,这些数据表明这10种烟草几丁质酶代表了互补酶,它们可能对其底物具有协同作用。本文讨论了它们通过攻击病原体的结构成分在植物防御中的作用以及通过使信号分子成熟在植物发育中的作用。