首页> 外文OA文献 >Characterizing the inhibition of mammalian intestinal α-glucosidases by enantiomeric iminosugars 1,4-dideoxy-1,4-imino-L-arabinatol and 1,4-dideoxy-1,4-imino-D-arabinatol
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Characterizing the inhibition of mammalian intestinal α-glucosidases by enantiomeric iminosugars 1,4-dideoxy-1,4-imino-L-arabinatol and 1,4-dideoxy-1,4-imino-D-arabinatol

机译:表征对映体亚氨基糖1,4-dideoxy-1,4-imino-L-arabinatol和1,4-dideoxy-1,4-imino-D-arabinatol对哺乳动物肠道α-葡萄糖苷酶的抑制作用

摘要

Sucrase isomaltase (SI) and maltase glucoamylase (MGAM) are both large Family 31 glycoside hydrolases with α-glucogenic activity (Cantarel et al., 2009; Lombard et al., 2014). Mammalian SI and MGAM, expressed predominantly in the small intestine, play essential roles in the process of starch digestion. Because their activities directly control the rate of α-glucogenesis in the small intestine, they also pose a useful target for the design of α-glucosidase inhibitors, a class of drugs useful for the treatment of type 2 diabetes and other metabolic disorders.The purpose of this work was to characterize inhibition kinetics for enantiomeric pyrrolidine iminosugars 1,4-dideoxy-1,4-imino-L-arabinatol (LAB-1) and 1,4-dideoxy-1,4-imino-D-arabinatol (DAB-1) with N- and C-terminal catalytic subunits of SI and MGAM, as well as for an additional C-terminal MGAM isoform, in the presence of three different substrates. Kinetic analysis indicates that LAB-1 is a more potent inhibitor of maltose and PNP-glucose hydrolysis than is DAB-1. Both mixed and competitive inhibition kinetics are observed for varying combinations of inhibitor, enzyme, and substrate. A general hypothesis regarding the binding of each of the two inhibitors is presented. Additionally, evidence for substrate inhibition of palatinose hydrolysis for Nt-SI and Nt-MGAM is reported and discussed.
机译:蔗糖异麦芽糖酶(SI)和麦芽糖酶葡糖淀粉酶(MGAM)都是具有α-糖原活性的大家族31糖苷水解酶(Cantarel等,2009; Lombard等,2014)。主要在小肠中表达的哺乳动物SI和MGAM在淀粉消化过程中起重要作用。由于它们的活性直接控制小肠中α-葡萄糖生成的速率,因此它们也为设计α-葡萄糖苷酶抑制剂(一种可用于治疗2型糖尿病和其他代谢性疾病的药物)提供了有用的靶标。这项工作的目的是表征对映体吡咯烷亚氨基糖1,4-二脱氧-1,4-亚氨基-L-阿拉伯糖醇(LAB-1)和1,4-二脱氧-1,4-亚氨基-D-阿拉伯糖醇(DAB)的抑制动力学-1)在三种不同底物的存在下,具有SI和MGAM的N和C末端催化亚基,以及其他C末端MGAM同工型。动力学分析表明,与DAB-1相比,LAB-1是更有效的麦芽糖和PNP-葡萄糖水解抑制剂。对于抑制剂,酶和底物的不同组合,观察到混合和竞争抑制动力学。提出了关于两种抑制剂各自结合的一般假设。另外,报道并讨论了底物抑制Nt-SI和Nt-MGAM的帕拉金糖水解的证据。

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    Mantynen Brianna;

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  • 年度 2015
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  • 正文语种 en
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