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用于蛋白质以及脯氨酰和羟脯氨酰残基的尿肽水解的高压灭菌最佳条件及高效液相色谱分析。

Optimum conditions of autoclaving for hydrolysis of proteins and urinary peptides of prolyl and hydroxyprolyl residues and HPLC analysis.

作者信息

Badadani Mallikarjun, SureshBabu S V, Shetty K Taranath

机构信息

Department of Neurochemistry, National Institute of Mental Health and Neurosciences, Hosur Road, Bangalore 560029, India.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Mar 1;847(2):267-74. doi: 10.1016/j.jchromb.2006.10.021. Epub 2006 Nov 16.

Abstract

A method for urinary peptide(s) and protein hydrolysis, involving autoclaving at 15psi (121 degrees C) for 60min, is described. Using three candidate proteins (bovine serum albumin, casein and gelatin) and urine specimens, the effect of autoclaving with respect to the optimum time required for hydrolysis under both acidic (6N HCl) and alkaline (6N KOH) conditions was studied. Recoveries of total amino acids from proteins and urine hydrolysate(s) suggest that complete hydrolysis of proteins and urinary peptides could be achieved by autoclaving for 30-60min instead of 16h of incubation at 110 degrees C. Further, stability of some of the individual amino acids was also studied. The observed differential stability of amino acids under acidic and alkaline conditions, as demonstrated in this study by HPLC analysis, makes it imperative to choose the appropriate hydrolytic condition while studying the composition of any given amino acids in urinary peptide(s)/protein hydrolysates. Further, the finding that both Pro and Hyp were stable under alkaline conditions of hydrolysis by autoclaving renders this method suitable for assaying these two amino acids from urine hydrolysates, hence its utility in the study of urinary peptide derived Hyp and Pro in bone/cartilage disorders.

摘要

本文描述了一种尿肽和蛋白质水解的方法,该方法包括在15磅力/平方英寸(121摄氏度)下高压灭菌60分钟。使用三种候选蛋白质(牛血清白蛋白、酪蛋白和明胶)以及尿液样本,研究了在酸性(6N盐酸)和碱性(6N氢氧化钾)条件下高压灭菌对水解所需最佳时间的影响。蛋白质和尿液水解产物中总氨基酸的回收率表明,通过高压灭菌30 - 60分钟而不是在110摄氏度下孵育16小时,可以实现蛋白质和尿肽的完全水解。此外,还研究了一些单个氨基酸的稳定性。如本研究通过高效液相色谱分析所示,在酸性和碱性条件下观察到的氨基酸差异稳定性使得在研究尿肽/蛋白质水解产物中任何给定氨基酸的组成时,必须选择合适的水解条件。此外,脯氨酸(Pro)和羟脯氨酸(Hyp)在高压灭菌碱性水解条件下均稳定这一发现,使得该方法适用于从尿液水解产物中测定这两种氨基酸,因此其在研究骨/软骨疾病中尿肽衍生的Hyp和Pro方面具有实用性。

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