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Immunochemical, genetic and morphological comparison of fucosylation mutants of Dictyostelium discoideum

机译:Dictyostelium discoideum岩藻糖基化突变体的免疫化学,遗传和形态学比较

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Mutations in three loci in Dictyostelium discoideum which affect fucosylation are described. Mutations in two of these loci resulted in the simultaneous loss of two separate carbohydrate epitopes. The GA-X epitope, which was competed by L-fucose, was absent in strains carrying a modC354, modD352 or modE353 mutation. These strains exposed a new carbohydrate epitope, competed by N-acetylglucosamine, and the size of several glycoproteins was reduced. A second epitope (GA-XII) was also absent in strains carrying the modC354 or modE353 mutations, reducing the size of the glycoprotein which normally expresses it. Fucose content was reduced in the three mutants, suggesting that each mutation affected a separate step in fucosylation. The lesions did not appear to inhibit synthesis of the underlying carbohydrate, because detergent extracts of mutant vesicles were more active than normal vesicles at transferring [14C]fucose from GDP-[14C]fucose to endogenous acceptor species. The modD352 and modE353 mutant strains incorporated exogenous [3H]fucose poorly, suggesting that lesions in the modD and modE genes interfere with the biosynthesis of fucoconjugates downstream from the previously described GDP-fucose synthesis defect of the modC mutation. Intac modE353 mutant vesicles were relatively inefficient in in vitro assays, suggesting a global fucosylation defect (which is consistent with the loss of both glycoantigens, GA-X and GA-XII, in this mutant). Finally, the modC354 mutation led to delayed accumulation of slime sheath in vitro. The three genetic loci define a fucosylation pathway in D. discoideum comprising defined biochemical steps which contribute to multicellular morphogenesis in this organism.
机译:描述了影响岩藻糖基化的Dictyostelium discoidum中的三个基因座中的突变。这些基因座中两种突变导致两种单独的碳水化合物表位同时丧失。在携带MODC354,MODD352或MODE353突变的菌株中不存在于L-岩藻糖竞争的GA-X表位。这些菌株暴露了一种新的碳水化合物表位,由N-乙酰葡糖胺竞争,并且减少了几种糖蛋白的尺寸。在携带MODC354或MODE353突变的菌株中也不存在第二表位(GA-XII),从而减少通常表达其的糖蛋白的尺寸。在三个突变体中降低了岩藻糖含量,表明每个突变在岩藻糖基化中影响了单独的步骤。病变似乎没有抑制底层碳水化合物的合成,因为突变囊泡的洗涤剂提取物比常规囊泡从GDP-[14C]岩藻糖转移到内源受体物种中的常规囊泡更活跃。 ModD352和Mode353突变菌株掺入外源[3H]岩藻糖味,表明MODD和模式基因中的病变干扰了从前所述的MODC突变的GDP - 岩藻糖合成缺陷下游的浮芯缀合物的生物合成。 Intac Mode353突变体囊泡在体外测定中相对效率较低,表明全局岩藻糖基化缺陷(在该突变体中含有Ga-X和Ga-XII的损失一致)。最后,ModC354突变导致体外延迟粘液鞘的累积。三种遗传基因座在D. Diemoideum中定义了岩藻糖基化途径,其包含定义的生化步骤,这些步骤有助于这种生物中的多细胞形态发生。

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