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关于进化上保守的简单重复DNA序列:“性别特异性”卫星成分是否具有任何序列依赖性功能?

On evolutionarily conserved simple repetitive DNA sequences: do "sex-specific" satellite components serve any sequence dependent function?

作者信息

Epple J T, Cellini A, Shorte M, Ohno S

机构信息

City of Hope Research Institute, Duarte, CA 91010.

出版信息

Differentiation. 1983;23 Suppl:S60-3. doi: 10.1007/978-3-642-69150-8_11.

Abstract

The nuclear genomes of eukaryotes contain DNA of varying degrees of repetition. Highly repetitious DNA and simple repetitive sequences as a fraction thereof appear to be distributed in a non-random fashion in the genome. There are arguments for and against functional roles of simple repetitive sequences, and the reasons for their evolutionary conservation are not at all clear. In order to learn more about the biologic role of simple repetitive sequences in the context of their evolutionary history, we report here the following results from studies of sex-specific snake satellite DNA: 1) The snake simple repeat sequence is 5'-GATAGACA-3' and it is strictly conserved throughout vertebrate evolution. 2) The simple repeat sequence is intimately interspersed with single-copy DNA throughout the mouse genome. 3) The simple repeat is transcribed into RNA in several animal systems and it is translatable in bacterial test systems. 4) The simple repeat sequence is sex-specifically arranged in vertebrates. 5) In snake DNA, the simple repeat is adjacent to a single-copy sequence which singles out a male-specific putative mRNA in mouse polysomal poly (A)+ RNA. Thus even if this snake simple repetitive sequence is not involved in a basic cellular function such as sex-determination, it is nevertheless a valuable tool to approach those problems.

摘要

真核生物的核基因组包含不同程度重复的DNA。高度重复的DNA及其一部分简单重复序列似乎以非随机方式分布在基因组中。对于简单重复序列的功能作用存在支持和反对的观点,其进化保守的原因也完全不清楚。为了在简单重复序列的进化历史背景下更多地了解其生物学作用,我们在此报告对性别特异性蛇卫星DNA研究的以下结果:1)蛇的简单重复序列是5'-GATAGACA-3',并且在整个脊椎动物进化过程中严格保守。2)简单重复序列在整个小鼠基因组中与单拷贝DNA紧密穿插。3)简单重复序列在几个动物系统中被转录成RNA,并且在细菌测试系统中可翻译。4)简单重复序列在脊椎动物中按性别特异性排列。5)在蛇DNA中,简单重复序列与一个单拷贝序列相邻,该单拷贝序列在小鼠多核糖体多聚(A)+ RNA中挑选出一个雄性特异性推定mRNA。因此,即使这种蛇的简单重复序列不参与诸如性别决定等基本细胞功能,但它仍然是解决这些问题的有价值工具。

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