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从曲霉菌中纯化囊泡-液泡(V)组分。

Purification of a vesicle-vacuole (V) fraction from Aspergillus.

作者信息

Chanda Anindya, Roze Ludmila V, Linz John E

机构信息

Department of Food Science and Human Nutrition, Michigan State University, East Lansing, MI, USA.

出版信息

Methods Mol Biol. 2012;944:259-66. doi: 10.1007/978-1-62703-122-6_19.

Abstract

Recent studies conducted in our laboratory demonstrate that Aspergillus parasiticus synthesizes and stores aflatoxin in transport vesicles and endosomes. Proteomics data suggest that enzymes involved in the synthesis of other secondary metabolites as well as enzymes involved in response to heat, osmotic, and oxidative stress also localize to these subcellular organelles. In order to better understand how cells integrate the regulation and function of secondary metabolite biosynthesis and stress response, it is important to understand the composition and function of the membrane-bound organelles that house this biosynthetic machinery. Isolation of vesicles, endosomes, and vacuoles (V fraction) is, therefore, an essential method to study secondary metabolism in A. parasiticus at the cellular level. Here, we describe a "one-step density gradient" method for purification of a highly heterogeneous cell fraction consisting of transport vesicles, endosomes, and vacuoles from protoplasts prepared from A. parasiticus cells harvested during aflatoxin synthesis.

摘要

我们实验室最近进行的研究表明,寄生曲霉在运输小泡和内体中合成并储存黄曲霉毒素。蛋白质组学数据表明,参与其他次生代谢物合成的酶以及参与热、渗透和氧化应激反应的酶也定位于这些亚细胞细胞器。为了更好地理解细胞如何整合次生代谢物生物合成和应激反应的调控与功能,了解容纳这种生物合成机制的膜结合细胞器的组成和功能非常重要。因此,分离小泡、内体和液泡(V组分)是在细胞水平研究寄生曲霉次生代谢的一种重要方法。在这里,我们描述了一种“一步密度梯度”方法,用于从黄曲霉毒素合成期间收获的寄生曲霉细胞制备的原生质体中纯化由运输小泡、内体和液泡组成的高度异质细胞组分。

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