首页> 外文期刊>Veterinary Parasitology >The second glutamic acid in the C-terminal CRD affects the carbohydrate-binding properties of recombinant galectins of Haemonchus contortus
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The second glutamic acid in the C-terminal CRD affects the carbohydrate-binding properties of recombinant galectins of Haemonchus contortus

机译:C端CRD中的第二个谷氨酸影响捻转血矛线虫半乳糖凝集素的碳水化合物结合特性

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The effects of the second glutamic acid (E) in the C-terminal CRDs on the hemagglutination and lactose-binding characteristics of the recombinant galectins of nematode Haemonchus contortus were observed using two isoforms of recombinant galectins as models, and the sugar-binding abilities of the N-terminal and C-terminal CRDs of the galectins were also compared. The second E in the CRD, WGNEER, of Hco-GAL-m was mutated to glycine acid (G) and resulted in a recombinant galectin (MG mutate) with a CRD of WGNEGR, identical to that of Hco-GAL-f. The G in Hco-GAL-f CRD, WGNEGR, was mutated to E and produced a recombinant galectin (FE mutate) equal to that of Hco-GAL-m. At the same time, the CRDs of the N-terminal (FNh,MNh) and C-terminal (FCh,MCh) of Hco-GAL-f, Hco-GAL-m were amplified by PCR. The abilities of carbohydrate binding and hemagglutination of the four galectins and the four CRDs were analysed, respectively, by alpha-lactose-agarose affinity chromatography and hemagglutination assay. The results showed that Hco-GAL-m and FE mutate bound effectively to alpha-lactose-agarose compared to Hco-GAL-f and MG mutate, which almost could not bind to the conjugate column. The hemagglutinating abilities of the Hco-GAL-m and FE mutate to human B type red blood cells were similar and were nearly two times higher than that of the Hco-GAL-f and MG mutate. The hemagglutinating ability of the MCh was five times to that of the MNh and FNh and almost two times to that of the FCh. The binding ability of the MCh and FCh were significantly reduced compared to that of the Hco-GAL-m and FE mutate, but still remained. As for the MNh and FNh, no elution peak was observed in the lactose-agarose affinity chromatography. These results suggested that the second amino acid E in the C-terminal CRD motif of H. contortus galectin was involved in carbohydrate binding and hemagglutination, and C-terminal CRDs had stronger carbohydrate ability than N-terminal CRDs.
机译:以重组半乳糖凝集素的两种同工型为模型,观察了C端CRD中第二个谷氨酸(E)对线虫Haemonchus contortus重组半凝素的血凝反应和乳糖结合特性的影响,并观察了其结合能力。还比较了半乳糖凝集素的N端和C端CRD。将Hco-GAL-m的CRD中的第二个E WGNEER突变为甘氨酸(G),并产生具有WGNEGR CRD的重组半乳糖凝集素(MG mutate),与Hco-GAL-f的CRD相同。 Hco-GAL-f CRD中的G(WGNEGR)突变为E,并产生了与Hco-GAL-m相等的重组半乳糖凝集素(FE突变)。同时,通过PCR扩增了Hco-GAL-f,Hco-GAL-m的N末端(FNh,MNh)和C末端(FCh,MCh)的CRD。通过α-乳糖-琼脂糖亲和色谱法和血凝试验分别分析了四种半乳糖凝集素和四种CRD的碳水化合物结合能力和血凝能力。结果表明,与几乎不能结合共轭柱的Hco-GAL-f和MG突变相比,Hco-GAL-m和FE突变与α-乳糖-琼脂糖有效结合。 Hco-GAL-m和FE突变体对人B型红细胞的血凝能力相似,几乎是Hco-GAL-f和MG突变体的两倍。 MCh的血凝能力是MNh和FNh的五倍,几乎是FCh的两倍。与Hco-GAL-m和FE突变相比,MCh和FCh的结合能力显着降低,但仍然保持不变。至于MNh和FNh,在乳糖-琼脂糖亲和色谱中未观察到洗脱峰。这些结果表明,捻转血矛线虫半乳糖凝集素的C末端CRD基序中的第二个氨基酸E参与碳水化合物结合和血凝反应,并且C末端CRD比N末端CRD具有更强的碳水化合物能力。

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