...
首页> 外文期刊>Scientific reports. >Characterization of the starch-acting MaAmyB enzyme from Microbacterium aurum B8.A representing the novel subfamily GH13_42 with an unusual, multi-domain organization
【24h】

Characterization of the starch-acting MaAmyB enzyme from Microbacterium aurum B8.A representing the novel subfamily GH13_42 with an unusual, multi-domain organization

机译:表征来自金黄色微细菌B8.A的具有淀粉作用的MaAmyB酶,该酶代表具有异常多域结构的新型亚家族GH13_42

获取原文

摘要

The bacterium Microbacterium aurum strain B8.A degrades granular starches, using the multi-domain MaAmyA α-amylase to initiate granule degradation through pore formation. This paper reports the characterization of the M. aurum B8.A MaAmyB enzyme, a second starch-acting enzyme with multiple FNIII and CBM25 domains. MaAmyB was characterized as an α-glucan 1,4-α-maltohexaosidase with the ability to subsequently hydrolyze maltohexaose to maltose through the release of glucose. MaAmyB also displays exo-activity with a double blocked PNPG7 substrate, releasing PNP. In M. aurum B8.A, MaAmyB may contribute to degradation of starch granules by rapidly hydrolyzing the helical and linear starch chains that become exposed after pore formation by MaAmyA. Bioinformatics analysis showed that MaAmyB represents a novel GH13 subfamily, designated GH13_42, currently with 165 members, all in Gram-positive soil dwelling bacteria, mostly Streptomyces. All members have an unusually large catalytic domain (AB-regions), due to three insertions compared to established α-amylases, and an aberrant C-region, which has only 30% identity to established GH13 C-regions. Most GH13_42 members have three N-terminal domains (2 CBM25 and 1 FNIII). This is unusual as starch binding domains are commonly found at the C-termini of α-amylases. The evolution of the multi-domain M. aurum B8.A MaAmyA and MaAmyB enzymes is discussed.
机译:金黄色微细菌菌株B8.A使用多域MaAmyAα-淀粉酶降解颗粒淀粉,从而通过孔形成引发颗粒降解。这篇论文报道了M. aurum B8.A MaAmyB酶的特征,这是具有多个FNIII和CBM25结构域的第二种淀粉作用酶。 MaAmyB的特征是一种α-葡聚糖1,4-α-麦芽六糖苷酶,具有随后通过释放葡萄糖将麦芽六糖水解为麦芽糖的能力。 MaAmyB还显示具有双重阻断的PNPG7底物的exo活性,从而释放PNP。在金黄色葡萄球菌B8.A中,MaAmyB可通过迅速水解在MaAmyA形成孔后暴露的螺旋形和线性淀粉链来促进淀粉颗粒的降解。生物信息学分析表明,MaAmyB代表一个新的GH13亚家族,命名为GH13_42,目前有165个成员,全部在革兰氏阳性土壤寄主细菌中,主要是链霉菌。由于与已建立的α-淀粉酶相比有三个插入,所有成员均具有异常大的催化结构域(AB区),以及异常的C区,其与已确定的GH13 C区仅具有30%的同一性。大多数GH13_42成员具有3个N末端结构域(2个CBM25和1个FNIII)。这是不寻常的,因为通常在α-淀粉酶的C末端发现淀粉结合结构域。讨论了多域金黄色葡萄球菌B8.A MaAmyA和MaAmyB酶的进化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号