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Lectin Domains of Polypeptide GalNAc Transferases Exhibit Glycopeptide Binding Specificity

机译:多肽Galnac转移酶的凝集素域表现出糖肽结合特异性

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UDP-GalNAc:polypeptide α-N-acetylgalactosaminyltransferases (GalNAc-Ts) constitute a family of up to 20 transferases that initiate mucin-type O-glycosylation. The transferases are structurally composed of catalytic and lectin domains. Two modes have been identified for the selection of glycosylation sites by GalNAc-Ts: confined sequence recognition by the catalytic domain alone, and concerted recognition of acceptor sites and adjacent GalNAc-glycosylated sites by the catalytic and lectin domains, respectively. Thus far, only the catalytic domain has been shown to have peptide sequence specificity, whereas the primary function of the lectin domain is to increase affinity to previously glycosylated substrates. Whether the lectin domain also has peptide sequence selectivity has remained unclear. Using a glycopeptide array with a library of synthetic and recombinant glycopeptides based on sequences of mucins MUC1, MUC2, MUC4, MUC5AC, MUC6, and MUC7 as well as a random glycopeptide bead library, we examined the binding properties of four different lectin domains. The lectin domains of GalNAc-T1, -T2, -T3, and -T4 bound different subsets of small glycopeptides. These results indicate an additional level of complexity in the initiation step of O-glycosylation by GalNAc-Ts.
机译:UDP-Galnac:多肽α-N-乙酰甘氨酸氨基氨基氨基转移酶(Galnac-Ts)构成最多20个转移蛋白的家族,其引发粘蛋白型O-糖基化。转移酶在结构上由催化和凝集素结构域组成。已经鉴定了通过GalNAC-TS选择糖基化位点的两种模式:单独的催化结构域仅限于催化结构域,并分别通过催化和凝集素结构域的受体位点和相邻的Galnac-糖基化位点进行狭窄的序列识别。到目前为止,仅显示催化结构域具有肽序列特异性,而凝集素结构域的主要功能是对预先糖基化底物增加亲和力。凝集素结构胶还具有肽序列选择性是否保持不清楚。使用基于粘蛋白MUC1,MUC2,MUC4,MUC5AC,MUC6和MUC7序列以及随机糖肽珠文库的合成和重组糖肽库和重组糖肽库以及随机胶肽珠文库的糖肽阵列。 GalNAC-T1,-T2,-T3和-T4结合不同亚群的凝集素结构域。这些结果表明通过GalNAC-TS的O-糖基化的起始步骤中的额外复杂性。

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