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比利时Gγ+(Aγδβ)0-地中海贫血缺失断点的核苷酸序列表明,许多此类重组事件存在共同机制。

Nucleotide sequence of the Belgian G gamma+(A gamma delta beta)0-thalassemia deletion breakpoint suggests a common mechanism for a number of such recombination events.

作者信息

Fodde R, Losekoot M, Casula L, Bernini L F

机构信息

Department of Human Genetics, Sylvius Laboratoria, Leiden, The Netherlands.

出版信息

Genomics. 1990 Dec;8(4):732-5. doi: 10.1016/0888-7543(90)90263-t.

Abstract

Various types of thalassemia or hereditary persistence of fetal hemoglobin (HPFH) are caused by deletions at the human beta-globin gene cluster. Many of these molecular lesions show a clear clustering as far as size and location of their breakpoints are concerned. This might indicate common recombination mechanisms responsible for the generation of these deletions. The Belgian G gamma+(A gamma delta beta)zero-thalassemia results from a large deletion spanning the beta-globin gene cluster 3' of the A gamma gene. The extent of this deletion, analyzed by field-inversion gel electrophoresis, is approximately 50 kb and is very similar to that of the Indian HPFH (G gamma A gamma HPFH III) previously characterized by P. S. Henthorn et al. (1986). Proc. Natl. Acad. Sci. USA 83: 5194-5198. Isolation of the deletion junction of the Belgian G gamma+(A gamma delta beta)zero-thalassemia by means of inverse polymerase chain reaction confirmed a very close relationship between these two independent deletions. The 3' breakpoint of the Belgian deletion is located at the midpoint of a 160-bp palindrome, only four nucleotides 5' from the correspondent endpoint of the Indian HPFH.

摘要

各种类型的地中海贫血或胎儿血红蛋白遗传性持续存在(HPFH)是由人类β-珠蛋白基因簇的缺失引起的。就这些缺失的断点大小和位置而言,许多此类分子损伤表现出明显的聚集性。这可能表明负责产生这些缺失的常见重组机制。比利时Gγ+(Aγδβ)0-地中海贫血是由一个跨越Aγ基因3'端β-珠蛋白基因簇的大片段缺失导致的。通过场反转凝胶电泳分析,该缺失的范围约为50 kb,与先前由P.S. Henthorn等人(1986年)鉴定的印度HPFH(GγAγHPFH III)非常相似。《美国国家科学院院刊》83: 5194 - 5198。通过反向聚合酶链反应分离比利时Gγ+(Aγδβ)0-地中海贫血的缺失连接点,证实了这两个独立缺失之间的密切关系。比利时缺失的3'断点位于一个160 bp回文序列的中点,距离印度HPFH的相应端点仅5'端四个核苷酸。

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