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Acidic mammalian chitinase is a proteases-resistant glycosidase in mouse digestive system

机译:酸性哺乳动物几丁质酶在小鼠消化系统中是一种耐蛋白酶的糖苷酶

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摘要

Chitinases are enzymes that hydrolyze chitin, a polymer of β-1, 4-linked N-acetyl-D-glucosamine (GlcNAc). Chitin has long been considered as a source of dietary fiber that is not digested in the mammalian digestive system. Here, we provide evidence that acidic mammalian chitinase (AMCase) can function as a major digestive enzyme that constitutively degrades chitin substrates and produces (GlcNAc)2 fragments in the mouse gastrointestinal environment. AMCase was resistant to endogenous pepsin C digestion and remained active in the mouse stomach extract at pH 2.0. The AMCase mRNA levels were much higher than those of four major gastric proteins and two housekeeping genes and comparable to the level of pepsinogen C in the mouse stomach tissues. Furthermore, AMCase was expressed in the gastric pepsinogen-synthesizing chief cells. The enzyme was also stable and active in the presence of trypsin and chymotrypsin at pH 7.6, where pepsin C was completely degraded. Mouse AMCase degraded polymeric colloidal and crystalline chitin substrates in the gastrointestinal environments in presence of the proteolytic enzymes. Thus, AMCase can function as a protease-resistant major glycosidase under the conditions of stomach and intestine and degrade chitin substrates to produce (GlcNAc)2, a source of carbon, nitrogen and energy.
机译:几丁质酶是水解几丁质的酶,几丁质是一种由β-1、4连接的N-乙酰基-D-葡糖胺(GlcNAc)构成的聚合物。几丁质一直被认为是在哺乳动物的消化系统中无法消化的膳食纤维来源。在这里,我们提供的证据表明,酸性哺乳动物几丁质酶(AMCase)可以作为主要的消化酶,在小鼠胃肠道环境中组成性地降解几丁质底物并产生(GlcNAc)2片段。 AMCase对内源性胃蛋白酶C消化有抵抗力,并且在pH 2.0的小鼠胃提取物中保持活性。 AMCase mRNA水平远高于四种主要胃蛋白和两个管家基因,且与小鼠胃组织中的胃蛋白酶原C水平相当。此外,AMCase在胃蛋白酶原合成主细胞中表达。该酶在胰蛋白酶和胰凝乳蛋白酶的pH值为7.6时也稳定且有活性,其中胃蛋白酶C完全降解。在蛋白水解酶的存在下,小鼠AMCase在胃肠道环境中降解了聚合的胶体和晶体几丁质底物。因此,AMCase在胃和肠的条件下可以起蛋白酶抗性的主要糖苷酶的作用,并降解几丁质底物以产生(GlcNAc)2,这是碳,氮和能量的来源。

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