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人类电压依赖性阴离子通道亚型1和2的定位再探讨。

Mapping of the human Voltage-Dependent Anion Channel isoforms 1 and 2 reconsidered.

作者信息

Messina A, Oliva M, Rosato C, Huizing M, Ruitenbeek W, van den Heuvel L P, Forte M, Rocchi M, De Pinto V

机构信息

Istituto di Scienze Biochimiche e Farmacologiche, Catania, Italy.

出版信息

Biochem Biophys Res Commun. 1999 Feb 24;255(3):707-10. doi: 10.1006/bbrc.1998.0136.

Abstract

Eukaryotic porins or VDACs (Voltage-Dependent Anion-selective Channels) are integral membrane proteins forming large hydrophilic pores. Three functioning genes for VDAC isoforms have been detected in mouse and the corresponding cDNAs are known also in humans. Tissue-specific VDAC isoform 1 (HVDAC1) deficiency in human skeletal muscle is responsible of a rare mitochondrial encephalomyopathy, fatal in childhood. Since coding sequences are not affected in the patient, we focused our interest in the gene structure. HVDAC1 and 2 have been previously mapped at chromosomes Xq13-21 and 21, respectively. Screening of an human chromosome X cosmid library resulted only in the isolation of processed pseudogenes, finely mapped at Xq22 and Xp11.2. Here, we report the mapping of HVDAC1 to chromosome 5q31 and HVDAC2 to chromosome 10q22 by FISH. Exon/intron probes, designed on the basis of the mouse gene structures, were obtained by long extension PCR amplification using the whole genomic DNA as a template. The sequence of the probe extremities clearly pointed to a genuine VDAC genomic sequence. Human and mouse regions where VDAC 1 and 2 genes were mapped are known to be synthetic, thus reinforcing the mapping of the human homologues.

摘要

真核孔蛋白或电压依赖性阴离子选择性通道(VDAC)是形成大型亲水孔的整合膜蛋白。在小鼠中已检测到三种功能性VDAC亚型基因,在人类中也已知相应的cDNA。人类骨骼肌中组织特异性的VDAC亚型1(HVDAC1)缺陷是一种罕见的线粒体脑病的病因,该疾病在儿童期致命。由于患者的编码序列未受影响,我们将兴趣集中在基因结构上。HVDAC1和2先前分别定位于X染色体的Xq13 - 21和21号染色体上。对人类X染色体黏粒文库进行筛选仅分离出了加工假基因,这些假基因精细定位于Xq22和Xp11.2。在此,我们通过荧光原位杂交(FISH)报告了HVDAC1定位于5号染色体的5q31,HVDAC2定位于10号染色体的10q22。基于小鼠基因结构设计的外显子/内含子探针,通过以全基因组DNA为模板的长延伸PCR扩增获得。探针末端的序列明确指向真正的VDAC基因组序列。已知VDAC 1和2基因所定位的人类和小鼠区域具有合成性,因此加强了人类同源物的定位。

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