Kitaoku Yoshihito, Umemoto Naoyuki, Ohnuma Takayuki, Numata Tomoyuki, Taira Toki, Sakuda Shohei, Fukamizo Tamo
Department of Advanced Bioscience, Kinki University, 3327-204 Nakamachi, Nara, 631-8505, Japan.
Planta. 2015 Oct;242(4):895-907. doi: 10.1007/s00425-015-2330-4. Epub 2015 May 22.
We first solved the crystal structure of class III catalytic domain of a chitinase from fern (PrChiA-cat), and found a structural difference between PrChiA-cat and hevamine. PrChiA-cat was found to have reduced affinities to chitin oligosaccharides and allosamidin. Plant class III chitinases are subdivided into enzymes with three disulfide bonds and those without disulfide bonds. We here referred to the former enzymes as class IIIa chitinases and the latter as class IIIb chitinases. In this study, we solved the crystal structure of the class IIIb catalytic domain of a chitinase from the fern Pteris ryukyuensis (PrChiA-cat), and compared it with that of hevamine, a class IIIa chitinase from Hevea brasiliensis. PrChiA-cat was found to adopt an (α/β)8 fold typical of GH18 chitinases in a similar manner to that of hevamine. However, PrChiA-cat also had two large loops that extruded from the catalytic site, and the corresponding loops in hevamine were markedly smaller than those of PrChiA-cat. An HPLC analysis of the enzymatic products revealed that the mode of action of PrChiA-cat toward chitin oligosaccharides, (GlcNAc) n (n = 4-6), differed from those of hevamine and the other class IIIa chitinases. The binding affinities of (GlcNAc)3 and (GlcNAc)4 toward the inactive mutant of PrChiA-cat were determined by isothermal titration calorimetry, and were markedly lower than those toward other members of the GH18 family. The affinity and the inhibitory activity of allosamidin toward PrChiA-cat were also lower than those toward the GH18 chitinases investigated to date. Several hydrogen bonds found in the crystal structure of hevamine-allosamidin complex were missing in the modeled structure of PrChiA-cat-allosamidin complex. The structural findings for PrChiA-cat successfully interpreted the functional data presented.
我们首先解析了一种来自蕨类植物的几丁质酶III类催化结构域(PrChiA-cat)的晶体结构,发现PrChiA-cat与橡胶树几丁质酶(hevamine)之间存在结构差异。研究发现PrChiA-cat对几丁质寡糖和别洛沙米定的亲和力降低。植物III类几丁质酶可细分为具有三个二硫键的酶和没有二硫键的酶。我们在此将前者称为IIIa类几丁质酶,后者称为IIIb类几丁质酶。在本研究中,我们解析了来自琉球凤尾蕨的几丁质酶IIIb类催化结构域(PrChiA-cat)的晶体结构,并将其与来自巴西橡胶树的IIIa类几丁质酶hevamine的结构进行了比较。结果发现PrChiA-cat与hevamine一样,采用了典型的GH18几丁质酶的(α/β)8折叠结构。然而,PrChiA-cat还有两个从催化位点伸出的大环,而hevamine中相应的环明显小于PrChiA-cat的环。对酶促产物的HPLC分析表明,PrChiA-cat对几丁质寡糖(GlcNAc)n(n = 4 - 6)的作用模式与hevamine和其他IIIa类几丁质酶不同。通过等温滴定量热法测定了(GlcNAc)3和(GlcNAc)4对PrChiA-cat无活性突变体的结合亲和力,结果明显低于它们对GH18家族其他成员的亲和力。别洛沙米定对PrChiA-cat的亲和力和抑制活性也低于对迄今所研究的GH18几丁质酶的亲和力和抑制活性。在hevamine - 别洛沙米定复合物的晶体结构中发现的几个氢键在PrChiA-cat - 别洛沙米定复合物的模拟结构中缺失。PrChiA-cat的结构发现成功地解释了所呈现的功能数据。