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首页> 外文期刊>The Journal of biological chemistry >Structures of Complexes of a Metal-independent Glycosyltransferase GT6 from Bacteroides ovatus with UDP-N-Acetylgalactosamine (UDP-GalNAc) and Its Hydrolysis Products
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Structures of Complexes of a Metal-independent Glycosyltransferase GT6 from Bacteroides ovatus with UDP-N-Acetylgalactosamine (UDP-GalNAc) and Its Hydrolysis Products

机译:用UDP-N-乙酰甘露黄酰胺(UDP-Galnac)和水解产物的菌株从Bacteroides Ovatus的金属无关糖基转移酶GT6的络合物结构及其水解产物

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Mammalian members of glycosyltransferase family 6 (GT6) of the CAZy database have a GT-A fold containing a conserved Asp-X-Asp (DXD) sequence that binds an essential metal cofactor. Bacteroides ovatus GT6a represents a GT6 clade found in more than 30 Gram-negative bacteria that is similar in sequence to the catalytic domains of mammalian GT6, but has an Asn95-Ala-Asn97 (NXN) sequence substituted for the DXD motif and metal-independent catalytic activity. Co-crystals of a low activity mutant of BoGT6a (E192Q) with UDP-GalNAc contained protein complexes with intact UDP-GalNAc and two forms with hydrolysis products (UDP plus GalNAc) representing an initial closed complex and later open form primed for product release. Two cationic residues near the C terminus of BoGT6a, Lys231 and Arg243, interact with the diphosphate moiety of UDP-GalNAc, but only Lys231 interacts with the UDP product and may function in leaving group stabilization. The amide group of Asn95, the first Asn of the NXN motif, interacts with the ribose moiety of the substrate. This metal-independent GT6 resembles its metal-dependent homologs in undergoing conformational changes on binding UDP-GalNAc that arise from structuring the C terminus to cover this substrate. It appears that in the GT6 family, the metal cofactor functions specifically in binding the UDP moiety in the donor substrate and transition state, actions that can be efficiently performed by components of the polypeptide chain.
机译:致糖基转移酶系列6(GT6)的母乳糖基瘤族成员具有GT-A折叠,其含有粘合必需金属辅因子的保守的ASP-X-ASP(DXD)序列。 Bacteroides Ovatus GT6a代表了在30多个革兰氏阴性细菌中发现的GT6思工,其序列与哺乳动物GT6的催化结构域相似,但具有取代的ASN95-ALA-ASN97(NXN)序列,取代DXD基序和无关催化活性。 Bogt6a(E192Q)的低活性突变体具有UDP-GALNAC的蛋白质复合物,其具有完整的UDP-Galnac和两种具有水解产物(UDP Plus GalNAc)的两种形式,其代表初始封闭的复合物和后来的开放形式,用于产品释放。在Bogt6a,Lys231和Arg243的C末端附近的两个阳离子残基与UDP-galnac的二磷酸二磷酸部分相互作用,但只有Lys231与UDP产物相互作用,并且可以在离开基团稳定方面起作用。 ASN95的酰胺组ASN95,NXN基序的第一ASN,与基材的核糖部分相互作用。这种金属无关的GT6类似于其金属依赖性同源物,该同源物经历了由构造C末端产生的结合UDP-GalNAc来覆盖该基材。看来,在GT6家族中,金属辅因子具体用于将UDP部分结合在供体基质和过渡状态中,可以通过多肽链的组分有效地进行的动作。

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