首页> 美国卫生研究院文献>Biochemical Journal >The size shape and specificity of the sugar-binding site of the jacalin-related lectins is profoundly affected by the proteolytic cleavage of the subunits.
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The size shape and specificity of the sugar-binding site of the jacalin-related lectins is profoundly affected by the proteolytic cleavage of the subunits.

机译:贾卡林相关凝集素的糖结合位点的大小形状和特异性受到亚基蛋白水解切割的深刻影响。

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摘要

Mannose-specific lectins with high sequence similarity to jacalin and the Maclura pomifera agglutinin have been isolated from species belonging to the families Moraceae, Convolvulaceae, Brassicaceae, Asteraceae, Poaceae and Musaceae. Although these novel mannose-specific lectins are undoubtedly related to the galactose-specific Moraceae lectins there are several important differences. Apart from the obvious differences in specificity, the mannose- and galactose-specific jacalin-related lectins differ in what concerns their biosynthesis and processing, intracellular location and degree of oligomerization of the protomers. Taking into consideration that the mannose-specific lectins are widely distributed in higher plants, whereas their galactose-specific counterparts are confined to a subgroup of the Moraceae sp. one can reasonably assume that the galactose-specific Moraceae lectins are a small-side group of the main family. The major change that took place in the structure of the binding site of the diverging Moraceae lectins concerns a proteolytic cleavage close to the N-terminus of the protomer. To corroborate the impact of this change, the specificity of jacalin was re-investigated using surface plasmon resonance analysis. This approach revealed that in addition to galactose and N -acetylgalactosamine, the carbohydrate-binding specificity of jacalin extends to mannose, glucose, N -acetylmuramic acid and N -acetylneuraminic acid. Owing to this broad carbohydrate-binding specificity, jacalin is capable of recognizing complex glycans from plant pathogens or predators.
机译:从茉莉科,旋花科,十字花科,菊科,禾本科和麝香科的物种中分离出了与jacalin和Maclura pomifera凝集素具有高度序列相似性的甘露糖特异性凝集素。尽管这些新型的甘露糖特异性凝集素无疑与半乳糖特异性的桑科凝集素有关,但仍存在一些重要差异。除了特异性上的明显差异外,甘露糖和半乳糖特异的贾卡林相关凝集素在有关其生物合成和加工,细胞内定位和祖细胞寡聚化程度方面有所不同。考虑到甘露糖特异性凝集素广泛分布在高等植物中,而其半乳糖特异性对应物则被限制在桑科植物的一个亚组中。可以合理地假设,半乳糖特有的桑科植物凝集素是主要家族的一小部分。发散的桑科植物凝集素结合位点结构发生的主要变化涉及到靠近原发性动物N末端的蛋白水解切割。为了证实这一变化的影响,使用表面等离子体共振分析重新研究了jacalin的特异性。该方法表明,除了半乳糖和N-乙酰基半乳糖胺以外,jacalin的碳水化合物结合特异性还扩展至甘露糖,葡萄糖,N-乙酰基山酰胺酸和N-乙酰基神经氨酸。由于具有广泛的碳水化合物结合特异性,jacalin能够识别来自植物病原体或捕食者的复杂聚糖。

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