利用cDNA直接选择技术在人类第9染色体上分离弗里德里希共济失调候选区新基因

Pandolfo M., Pizzuti A., Redolfi E., Munaro M., Didonato S., Cavalcanti F., Filla A., Monticelli A., Pianese L., Cocozza S.
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引用次数: 6

摘要

弗里德赖希共济失调(FRDA)位点位于染色体9q13上,在标记D9S202/FR1和FR5之间的间隔小于1 Mb。我们克隆了YACs中的FRDA候选区域,并使用cDNA选择方法开始系统地搜索该区域的转录本。在FRDA最小遗传区端粒末端附近分离到几个重叠的cDNA克隆。Zoo blot分析表明,这些cdna在不同物种间具有较好的保守性。通过与含有人脑多聚(A)+ RNA的Northern blot杂交,鉴定了4.8 kb的转录本。这些克隆的部分序列与先前描述的匿名脑cDNA (EST01251)具有100%的同源性。在FRDA患者和携带者中寻找该基因突变的研究正在进行中。到目前为止还没有发现突变,但我们已经确定了DNA多态性。这种多态性在先前描述的具有更多端粒标记的重组的FRDA谱系中是非重组的。
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Isolation of a New Gene in the Friedreich Ataxia Candidate Region on Human Chromosome 9 by cDNA Direct Selection

The Friedreich ataxia (FRDA) locus is localized on chromosome 9q13 in an interval less than 1 Mb between markers D9S202/FR1 and FR5. We cloned the FRDA candidate region in YACs, and we started a systematic search for transcripts in this region using the cDNA selection approach. Several overlapping cDNA clones mapping near the telomeric end of the FRDA minimum genetic region were isolated. Zoo blot analysis demonstrated that these cDNAs are well conserved among different species. A transcript of 4.8 kb was identified by hybridization to a Northern blot containing human brain poly(A)+ RNA. Partial sequence of these clones showed 100% homology with a previously described anonymous brain cDNA (EST01251). A search for mutations of this gene in FRDA patients and carriers is in progress. No mutations have been found to date, but we have identified a DNA polymorphysm. This polymorphism was nonrecombinant with the disease in a previously described FRDA pedigree in which a recombination had occurred with more telomeric markers.

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