首页> 外文期刊>Journal of bacteriology >Enzymology and Structure of the GH13_31 Glucan 1,6-α-Glucosidase That Confers Isomaltooligosaccharide Utilization in the Probiotic Lactobacillus acidophilus NCFM
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Enzymology and Structure of the GH13_31 Glucan 1,6-α-Glucosidase That Confers Isomaltooligosaccharide Utilization in the Probiotic Lactobacillus acidophilus NCFM

机译:GH13_31葡聚糖1,6-α-葡糖苷酶在益生菌嗜酸乳杆菌NCFM中利用异麦芽低聚糖的酶学和结构

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Isomaltooligosaccharides (IMO) have been suggested as promising prebiotics that stimulate the growth of probiotic bacteria. Genomes of probiotic lactobacilli from the acidophilus group, as represented by Lactobacillus acidophilus NCFM, encode α-1,6 glucosidases of the family GH13_31 (glycoside hydrolase family 13 subfamily 31) that confer degradation of IMO. These genes reside frequently within maltooligosaccharide utilization operons, which include an ATP-binding cassette transporter and α-glucan active enzymes, e.g., maltogenic amylases and maltose phosphorylases, and they also occur separated from any carbohydrate transport or catabolism genes on the genomes of some acidophilus complex members, as in L. acidophilus NCFM. Besides the isolated locus encoding a GH13_31 enzyme, the ABC transporter and another GH13 in the maltooligosaccharide operon were induced in response to IMO or maltotetraose, as determined by reverse transcription-PCR (RT-PCR) transcriptional analysis, suggesting coregulation of α-1,6- and α-1,4-glucooligosaccharide utilization loci in L. acidophilus NCFM. The L. acidophilus NCFM GH13_31 (LaGH13_31) was produced recombinantly and shown to be a glucan 1,6-α-glucosidase active on IMO and dextran and product-inhibited by glucose. The catalytic efficiency of LaGH13_31 on dextran and the dextran/panose (trisaccharide) efficiency ratio were the highest reported for this class of enzymes, suggesting higher affinity at distal substrate binding sites. The crystal structure of LaGH13_31 was determined to a resolution of 2.05 ? and revealed additional substrate contacts at the +2 subsite in LaGH13_31 compared to the GH13_31 from Streptococcus mutans (SmGH13_31), providing a possible structural rationale to the relatively high affinity for dextran. A comprehensive phylogenetic and activity motif analysis mapped IMO utilization enzymes from gut microbiota to rationalize preferential utilization of IMO by gut residents.
机译:异麦芽低聚糖(IMO)被认为是有前途的益生元,可以刺激益生菌的生长。以嗜酸乳杆菌NCFM为代表的来自嗜酸菌组的益生乳酸菌基因组编码GH13_31家族(糖苷水解酶家族13亚家族31)的α-1,6葡糖苷酶。这些基因经常存在于麦芽低聚糖利用操纵子中,其中包括ATP结合盒转运蛋白和α-葡聚糖活性酶,如产麦芽糖淀粉酶和麦芽糖磷酸化酶,并且它们也与某些嗜酸菌基因组上的任何碳水化合物转运或分解代谢基因分开存在。复杂成员,如嗜酸乳杆菌NCFM。通过逆转录PCR(RT-PCR)转录分析确定,除了分离的编码GH13_31酶的基因座外,麦芽低聚糖操纵子中还诱导了ABC转运蛋白和另一个GH13,这是通过逆转录PCR(RT-PCR)转录分析确定的,表明α-1的共调节嗜酸乳杆菌NCFM中的6-和α-1,4-葡萄糖寡糖利用位点。嗜酸乳杆菌NCFM GH13_31( La GH13_31)是重组产生的,显示为对IMO和葡聚糖具有活性的葡聚糖1,6-α-葡萄糖苷酶,并被葡萄糖抑制。对于这类酶, La GH13_31对右旋糖酐的催化效率和右旋糖酐/聚葡萄糖(三糖)效率比最高,表明在远端底物结合位点的亲和力更高。确定 La GH13_31的晶体结构,分辨率为2.05?并显示与来自变形链球菌( Sm GH13_31)的GH13_31相比,在 La GH13_31的+2亚位处有额外的底物接触,为相对较高的亲和力提供了可能的结构原理葡聚糖。全面的系统发育和活动基序分析绘制了肠道菌群中IMO利用酶的图谱,以合理化肠道居民对IMO的优先利用。

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