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短密青霉NRC 829中参与烟酰胺腺嘌呤二核苷酸降解的酶的纯化与特性分析

Purification and characterization of the enzymes involved in nicotinamide adenine dinucleotide degradation by Penicillium brevicompactum NRC 829.

作者信息

Ali Thanaa Hamed, El-Ghonemy Dina Helmy

机构信息

Department of Microbial Chemistry, National Research Centre, 33 EL Bohouth St., Dokki, 12622, Egypt.

出版信息

3 Biotech. 2016 Jun;6(1):34. doi: 10.1007/s13205-015-0349-7. Epub 2016 Jan 21.

Abstract

The present study was conducted to investigate a new pathway for the degradation of nicotinamide adenine dinucleotide (NAD) by Penicillium brevicompactum NRC 829 extracts. Enzymes involved in the hydrolysis of NAD, i.e. alkaline phosphatase, aminohydrolase and glycohydrolase were determined. Alkaline phosphatase was found to catalyse the sequential hydrolysis of two phosphate moieties of NAD molecule to nicotinamide riboside plus adenosine. Adenosine was then deaminated by aminohydrolase to inosine and ammonia. While glycohydrolase catalyzed the hydrolysis of the nicotinamide-ribosidic bond of NAD+ to produce nicotinamide and ADP-ribose in equimolar amounts, enzyme purification through a 3-step purification procedure revealed the existence of two peaks of alkaline phosphatases, and one peak contained deaminase and glycohydrolase activities. NAD deaminase was purified to homogeneity as estimated by sodium dodecyl sulphate-polyacrylamide gel electrophoresis with an apparent molecular mass of 91 kDa. Characterization and determination of some of NAD aminohydrolase kinetic properties were conducted due to its biological role in the regulation of cellular NAD level. The results also revealed that NAD did not exert its feedback control on nicotinamide amidase produced by P. brevicompactum.

摘要

本研究旨在探究短密青霉NRC 829提取物降解烟酰胺腺嘌呤二核苷酸(NAD)的新途径。测定了参与NAD水解的酶,即碱性磷酸酶、氨基水解酶和糖水解酶。发现碱性磷酸酶催化NAD分子的两个磷酸基团依次水解为烟酰胺核糖苷和腺苷。然后腺苷被氨基水解酶脱氨生成次黄嘌呤核苷和氨。糖水解酶催化NAD⁺的烟酰胺 - 核糖苷键水解,以等摩尔量产生烟酰胺和ADP - 核糖,通过三步纯化程序进行酶纯化,结果显示存在两个碱性磷酸酶峰,其中一个峰含有脱氨酶和糖水解酶活性。通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳估计,NAD脱氨酶已纯化至同质,其表观分子量为91 kDa。由于其在调节细胞NAD水平中的生物学作用,对NAD氨基水解酶的一些动力学特性进行了表征和测定。结果还表明,NAD对短密青霉产生的烟酰胺酰胺酶没有发挥反馈控制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e115/4722047/e3dcb9760673/13205_2015_349_Fig1_HTML.jpg

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