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Molecular evolution of the human adult alpha-globin-like gene region: insertion and deletion of Alu family repeats and non-Alu DNA sequences.人类成人α-珠蛋白样基因区域的分子进化:Alu家族重复序列和非Alu DNA序列的插入与缺失
Proc Natl Acad Sci U S A. 1983 Oct;80(19):5970-4. doi: 10.1073/pnas.80.19.5970.
2
The adult alpha-globin locus of Old World monkeys: an abrupt breakdown of sequence similarity to human is defined by an Alu family repeat insertion site.旧世界猴的成年α-珠蛋白基因座:Alu家族重复序列插入位点界定了与人类序列相似性的突然中断。
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3
The chromosomal arrangement of human alpha-like globin genes: sequence homology and alpha-globin gene deletions.人类α-珠蛋白基因的染色体排列:序列同源性与α-珠蛋白基因缺失
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4
Primate evolution of the alpha-globin gene cluster and its Alu-like repeats.α-珠蛋白基因簇及其类Alu重复序列的灵长类动物进化
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Nucleic Acids Res. 1983 Nov 25;11(22):8087-101. doi: 10.1093/nar/11.22.8087.

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Molecular origin of the mosaic sequence arrangements of higher primate alpha-globin duplication units.高等灵长类动物α-珠蛋白重复单元镶嵌序列排列的分子起源
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7
Sequential insertion of Alu family repeats into specific genomic sites of higher primates.Alu家族重复序列在高等灵长类动物特定基因组位点的顺序插入。
Proc Natl Acad Sci U S A. 1993 Aug 1;90(15):7205-9. doi: 10.1073/pnas.90.15.7205.
8
Gene conversion between unlinked sequences in the germline of mice.小鼠生殖细胞系中不连锁序列间的基因转换。
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9
Activation of RNA polymerase III transcription of human Alu repetitive elements by adenovirus type 5: requirement for the E1b 58-kilodalton protein and the products of E4 open reading frames 3 and 6.5型腺病毒对人Alu重复元件RNA聚合酶III转录的激活作用:对E1b 58千道尔顿蛋白以及E4开放阅读框3和6产物的需求
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10
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Rapid duplication and loss of genes coding for the alpha chains of hemoglobin.编码血红蛋白α链的基因的快速复制与丢失。
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人类成人α-珠蛋白样基因区域的分子进化:Alu家族重复序列和非Alu DNA序列的插入与缺失

Molecular evolution of the human adult alpha-globin-like gene region: insertion and deletion of Alu family repeats and non-Alu DNA sequences.

作者信息

Hess J F, Fox M, Schmid C, Shen C K

出版信息

Proc Natl Acad Sci U S A. 1983 Oct;80(19):5970-4. doi: 10.1073/pnas.80.19.5970.

DOI:10.1073/pnas.80.19.5970
PMID:6310609
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC390199/
Abstract

Previous heteroduplex studies have revealed extensive sequence homology between the two human adult alpha-globin-like genes (alpha 2 and alpha 1) and their flanking regions. These homologous regions, which are interrupted by two blocks of nonhomology, each span approximately 4 kilobases [Lauer, J., Shen, C.-K. J. & Maniatis, T. (1980) Cell 20, 119-130]. We have determined 3 kilobases of DNA sequences within and flanking the nonhomologous blocks of these two tandem duplication units. A total of three Alu family repeats has been identified. Two of them are approximately 300 base pairs long and define the 3' ends of the first homology blocks. The third Alu family member is a 600-base-pair-long sequence consisting of two monomeric Alu members arranged in a head-to-tail fashion. It is located in the 3' portion of the first block of nonhomology in alpha 2-gene-containing unit. We present direct evidence that this dimeric Alu sequence was inserted at a staggered break. The second nonhomology block is the result of insertion or deletion of a 224-base-pair sequence. From these data and the calculation of sequence divergence, we propose a history for the evolution of the human adult alpha-globin-like gene region. We also suggest that DNA insertion elements may disrupt gene correction processes in the two duplication units containing alpha 2- and alpha 1-globin genes.

摘要

以往的异源双链研究显示,两个人类成人α-珠蛋白样基因(α2和α1)及其侧翼区域之间存在广泛的序列同源性。这些同源区域被两个非同源区段打断,每个区段跨度约为4千碱基[劳尔,J.,沈,C.-K. J. & 马尼阿蒂斯,T.(1980年)《细胞》20卷,第119 - 130页]。我们已经测定了这两个串联重复单元非同源区段内部及侧翼的3千碱基DNA序列。总共鉴定出三个Alu家族重复序列。其中两个约300个碱基对长,界定了第一个同源区段的3'端。第三个Alu家族成员是一个600个碱基对长的序列,由两个单体Alu成员首尾相连排列而成。它位于含α2基因单元中第一个非同源区段的3'部分。我们提供了直接证据,表明这个二聚体Alu序列是在一个交错断裂处插入的。第二个非同源区段是一个224个碱基对序列插入或缺失的结果。根据这些数据以及序列分歧的计算,我们提出了人类成人α-珠蛋白样基因区域的进化历程。我们还认为,DNA插入元件可能会干扰含α2和α1珠蛋白基因的两个重复单元中的基因校正过程。