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一种用于几丁质合成酶活性的非放射性高通量检测方法。

A nonradioactive, high throughput assay for chitin synthase activity.

作者信息

Lucero Héctor A, Kuranda Michael J, Bulik Dorota A

机构信息

Department of Molecular and Cell Biology, Goldman School of Dental Medicine, Boston University Medical Center, Boston, MA 02118, USA.

出版信息

Anal Biochem. 2002 Jun 1;305(1):97-105. doi: 10.1006/abio.2002.5594.

Abstract

Wheat germ agglutinin (WGA) binds with high affinity and specificity to several sites on chitin polymers. Based on these properties we have modified and adapted a previously patented (U.S. patent 5,888,757) nonradioactive, high throughput screening assay for antimicrobial agents, making it suitable as a quantitative enzymatic assay for the activity of individual chitin synthase isozymes in yeast. The procedure involves binding of synthesized chitin to a WGA-coated surface followed by detection of the polymer with a horseradish peroxidase-WGA conjugate. Horseradish peroxidase activity is then determined as an increment in absorbance at 600 nm. Absorbance values are converted to amounts of chitin using acid-solubilized chitin as a standard. The high sensitivity (lower limit of detection about 50 ng chitin), low dispersion (lower than 10%), and high throughput (96-well microtiter plate format) make this assay an excellent substitute for the conventional radioactive chitin synthase assay in cell-free extracts. We have applied this method to the differential assay of chitin synthase activities (Chs1, Chs2, and Chs3) in cell-free extracts of Saccharomyces cerevisiae. Analysis of Chs3 activity in chitosomal and plasma membrane fractions revealed that Chs3 in the plasma membrane fraction is about sixfold more active than in the chitosome.

摘要

小麦胚芽凝集素(WGA)能以高亲和力和特异性与几丁质聚合物上的多个位点结合。基于这些特性,我们对先前已获专利(美国专利5,888,757)的抗菌剂非放射性高通量筛选测定法进行了改进和调整,使其适用于定量检测酵母中单个几丁质合酶同工酶的活性。该过程包括将合成的几丁质与包被有WGA的表面结合,随后用辣根过氧化物酶-WGA偶联物检测聚合物。然后将辣根过氧化物酶活性测定为600nm处吸光度的增加。以酸溶性几丁质为标准,将吸光度值换算为几丁质的量。该测定法具有高灵敏度(检测下限约为50ng几丁质)、低离散度(低于10%)和高通量(96孔微量滴定板形式),使其成为无细胞提取物中传统放射性几丁质合酶测定法的极佳替代方法。我们已将该方法应用于酿酒酵母无细胞提取物中几丁质合酶活性(Chs1、Chs2和Chs3)的差异测定。对几丁质体和质膜组分中Chs3活性的分析表明,质膜组分中的Chs3活性比几丁质体中的高约六倍。

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