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染色体的分级分离。II. 水相双相系统中疏水亲和分配的应用。

Fractionation of chromosomes. II. Use of hydrophobic affinity partition in aqueous two-phase system.

作者信息

Bandyopadhyay D, Pinaev G

出版信息

Exp Cell Res. 1983 Apr 1;144(2):313-21. doi: 10.1016/0014-4827(83)90410-x.

Abstract

A simple method for separation of large quantities of isolated metaphase chromosomes in Single-Tube Partition (STP), using hydrophobic ligand in an aqueous two-phase system is presented. The two-phase system is composed of an aqueous solution of Dextran 500 and poly(ethylene) glycol 6000 (PEG). The concentration of chromosomes to be separated has no influence on the distribution behaviour in the partition system and up to 10(7) chromosomes can be used in a phase system as small as 3-5 g (5 ml tube). Different groups of chromosomes differ in their distribution in the two phases and the introduction of PEG with covalently attached hydrophobic ligand provides a means of controlling the distribution of chromosomes. A combination of positively charged trimethylaminomethane PEG (TMA-PEG) together with palmitat PEG (P-PEG) gives a fairly good condition for separating chromosomes on the basis of their net surface charge differences.

摘要

本文介绍了一种在单管分配(STP)中使用水相两相系统中的疏水配体分离大量分离中期染色体的简单方法。该两相系统由葡聚糖500和聚乙二醇6000(PEG)的水溶液组成。待分离染色体的浓度对分配系统中的分布行为没有影响,在小至3-5克(5毫升管)的相系统中可使用多达10⁷条染色体。不同组的染色体在两相中的分布不同,引入带有共价连接疏水配体的PEG提供了一种控制染色体分布的方法。带正电荷的三甲基氨基甲烷PEG(TMA-PEG)与棕榈酸PEG(P-PEG)的组合为基于染色体净表面电荷差异分离染色体提供了相当好的条件。

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