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人工染色体在 和它们的应用中的转化。

Transformation with Artificial Chromosomes in and Their Applications.

机构信息

Departments of Biochemistry and Molecular Biophysics and Biological Sciences, Columbia University, New York, NY.

Department of Molecular Biology, Princeton University, Princeton, NJ, and.

出版信息

G3 (Bethesda). 2019 Oct 7;9(10):3119-3127. doi: 10.1534/g3.119.400298.

Abstract

, like other ciliates, has separate germline and somatic nuclei. The diploid germline genome in the micronucleus is composed of long conventional chromosomes. The macronucleus contains a somatic genome which is naturally fragmented into thousands of kilobase-sized chromosomes. Here, we develop a method to stably incorporate artificial chromosomes into the macronucleus. We report two cases of successful transformation and demonstrate the use of somatic transformation to investigate gene regulation and gene function in We show that the transformed artificial chromosomes are maintained through multiple asexual divisions. Furthermore, they support the transcriptional regulation of the native chromosome from which they were derived and are translated to produce functional proteins. To test if transformed chromosomes are amenable to practical applications, we generated a tagged version of a representative gene (AL1) and used it to co-precipitate associated proteins. This revealed an association with nucleic acid binding proteins, specifically RNA-binding proteins, and RNA immunoprecipitation of AL1 revealed its association with multiple RNAs. The use of artificial chromosomes in enables an array of genetic and molecular biological assays, as well as new avenues of inquiry into the epigenetic programming of macronuclear development and genome rearrangement.

摘要

与其他纤毛虫一样,具有独立的生殖核和体细胞核。二倍体生殖系基因组位于微核中,由长的常规染色体组成。麦克核包含一个体细胞基因组,它自然地断裂成数千个千碱基大小的染色体。在这里,我们开发了一种将人工染色体稳定掺入麦克核的方法。我们报告了两个成功转化的案例,并证明了体细胞转化可用于研究基因调控和基因功能。我们表明,转化的人工染色体在多个无性分裂中得以维持。此外,它们支持其来源的天然染色体的转录调控,并被翻译产生功能蛋白。为了测试转化染色体是否适用于实际应用,我们生成了一个代表性基因(AL1)的标记版本,并使用它来共沉淀相关蛋白。这揭示了与核酸结合蛋白(特别是 RNA 结合蛋白)的关联,并且 RNA 免疫沉淀 AL1 揭示了其与多种 RNA 的关联。在 中使用人工染色体可以进行一系列遗传和分子生物学分析,以及探索麦克核发育和基因组重排的表观遗传编程的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee25/6778790/bbefefd51083/3119f1.jpg

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