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耻垢分枝杆菌中含LysM和凝集素结构域的蛋白质与壳寡糖结合时的负协同性和高亲和力

Negative Cooperativity and High Affinity in Chitooligosaccharide Binding by a Mycobacterium smegmatis Protein Containing LysM and Lectin Domains.

作者信息

Patra Dhabaleswar, Mishra Padmanabh, Vijayan Mamannamana, Surolia Avadhesha

机构信息

Molecular Biophysics Unit, Indian Institute of Science , Bangalore 560 012, India.

出版信息

Biochemistry. 2016 Jan 12;55(1):49-61. doi: 10.1021/acs.biochem.5b00841. Epub 2015 Dec 23.

Abstract

LysM domains have been recognized in bacteria and eukaryotes as carbohydrate-binding protein modules, but the mechanism of their binding to chitooligosaccharides has been underexplored. Binding of a Mycobacterium smegmatis protein containing a lectin (MSL) and one LysM domain to chitooligosaccharides has been studied using isothermal titration calorimetry and fluorescence titration that demonstrate the presence of two binding sites of nonidentical affinities per dimeric MSL-LysM molecule. The affinity of the molecule for chitooligosaccharides correlates with the length of the carbohydrate chain. Its binding to chitooligosaccharides is characterized by negative cooperativity in the interactions of the two domains. Apparently, the flexibility of the long linker that connects the LysM and MSL domains plays a facilitating role in this recognition. The LysM domain in the MSL-LysM molecule, like other bacterial domains but unlike plant LysM domains, recognizes equally well peptidoglycan fragments as well as chitin polymers. Interestingly, in the case presented here, two LysM domains are enough for binding to peptidoglycan in contrast to the three reportedly required by the LysM domains of Bacillus subtilis and Lactococcus lactis. Also, the affinity of the MSL-LysM molecule for chitooligosaccharides is higher than that of LysM-chitooligosaccharide interactions reported so far.

摘要

溶菌酶M(LysM)结构域在细菌和真核生物中被认为是碳水化合物结合蛋白模块,但其与壳寡糖的结合机制尚未得到充分研究。利用等温滴定量热法和荧光滴定法研究了耻垢分枝杆菌中一种含有凝集素(MSL)和一个LysM结构域的蛋白与壳寡糖的结合,结果表明每个二聚体MSL-LysM分子存在两个亲和力不同的结合位点。该分子对壳寡糖的亲和力与碳水化合物链的长度相关。其与壳寡糖的结合在两个结构域的相互作用中表现出负协同性。显然,连接LysM和MSL结构域的长连接子的灵活性在这种识别中起到了促进作用。MSL-LysM分子中的LysM结构域与其他细菌结构域一样,但与植物LysM结构域不同,对肽聚糖片段和几丁质聚合物的识别效果相同。有趣的是,在本文所述的情况下,与据报道枯草芽孢杆菌和乳酸乳球菌的LysM结构域需要三个才能结合肽聚糖不同,两个LysM结构域就足以结合肽聚糖。此外,MSL-LysM分子对壳寡糖的亲和力高于迄今为止报道的LysM与壳寡糖相互作用的亲和力。

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