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The Exiguobacterium sibiricum 255-15 GtfC enzyme representing a novel glycoside hydrolase 70 subfamily of 4,6-α-glucanotransferase enzymes

机译:代表一种新的4,6-α-葡糖基转移酶糖苷水解酶70亚家族的西伯利亚克氏杆菌255-15 GtfC酶

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摘要

The Glycoside Hydrolase (GH) family 70 originally was established for glucansucrase enzymes, solely found in lactic acid bacteria, synthesizing α-glucan polysaccharides from sucrose (e.g. GtfA). In recent years we have characterized GtfB and related Lactobacillus enzymes as 4,6-α-glucanotransferase enzymes. These GtfB type of enzymes constitute a first GH70 subfamily, unable to act on sucrose as substrate, but active with maltodextrins and starch, cleaving (α1→4) linkages and synthesizing linear (α1→6)-glucan chains. The GtfB disproportionating type of activity results in conversion of malto-oligosaccharides into IsoMalto-/Malto-Polysaccharides with a relatively high percentage of (α1→6) linkages.This paper reports the identification of a second GH70 subfamily (designated GtfC enzymes) and the characterization of the Exiguobacterium sibiricum 255-15 GtfC enzyme, also inactive with sucrose and displaying 4,6-α-glucanotransferase activity with malto-oligosaccharides. GtfC differs from GtfB in synthesizing IsoMalto-/Malto-Oligosaccharides. Biochemically the GtfB and GtfC type of enzymes are related but phylogenetically they clearly constitute different GH70 subfamilies, displaying only 30% sequence identity. Whereas GtfB type of enzymes largely have the same domain order as glucansucrases (with α-amylase domains A, B, C, plus domains IV and V), this GtfC type of enzyme differs in the order of these domains and completely lacks domain V. In GtfC the sequence of the conserved regions I-IV of clan GH-H is identical to that in GH13 (I-II-III-IV) but different from that in GH70 (II-III-IV-I due to a circular permutation of the (β/α)8-barrel). The GtfC 4,6-α-glucanotransferase enzymes thus represent structurally and functionally very interesting evolutionary intermediates between α-amylase and glucansucrase enzymes.
机译:葡糖苷水解酶(GH)家族70最初是为仅在乳酸菌中发现的,从蔗糖中合成α-葡聚糖(例如GtfA)的葡聚糖蔗糖酶而建立的。近年来,我们已将GtfB和相关的乳酸杆菌酶定性为4,6-α-葡聚糖转移酶。这些GtfB型酶构成了第一个GH70亚家族,不能以蔗糖为底物起作用,但与麦芽糖糊精和淀粉有活性,裂解(α1→4)键并合成线性(α1→6)-葡聚糖链。 GtfB歧化活性导致麦芽寡糖转变为具有相对较高(α1→6)键比例的异麦芽糖/麦芽多糖。沙门氏菌255-15 GtfC酶的特征,也对蔗糖无活性,并与麦芽寡糖一起显示4,6-α-葡聚糖转移酶活性。 GtfC与GtfB的区别在于合成异麦芽糖/麦芽寡糖。在生物化学上,GtfB和GtfC类型的酶是相关的,但从系统发育上看,它们显然构成了不同的GH70亚家族,仅显示30%的序列同一性。尽管GtfB类型的酶在很大程度上与葡聚糖酶具有相同的域顺序(具有α-淀粉酶域A,B,C以及域IV和V),但这种GtfC类型的酶在这些域的顺序上有所不同,并且完全缺乏域V.在GtfC中,GH-H族的保守区I-IV的序列与GH13(I-II-III-IV)的序列相同,但由于循环排列而与GH70(II-III-IV-I)的序列不同(β/α)8-桶)。因此,GtfC4,6-α-葡糖基转移酶代表了结构和功能上非常有趣的α-淀粉酶和葡聚糖蔗糖酶之间的进化中间体。

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