Borsani G, Rugarli E I, Taglialatela M, Wong C, Ballabio A
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.
Genomics. 1995 May 1;27(1):131-41. doi: 10.1006/geno.1995.1015.
We describe the isolation and characterization of a human gene (CLCN3) and its murine homologue (Clcn3) sharing significant sequence and structural similarities with all previously identified members of the voltage-gated chloride channel (ClC) family. This gene is expressed primarily in tissues derived from neuroectoderm. Within the brain, Clcn3 expression is particularly evident in the hippocampus, olfactory cortex, and olfactory bulb. CLCN3 encodes a 760-amino-acid protein that differs by only 2 amino acid residues from the protein encoded by Clcn3. CLCN3 protein also shows a high similarity with GEF1, an integral membrane protein of the yeast Saccharomyces cerevisiae known to be involved in respiration and iron-limited cell growth, and with the predicted protein product of a DNA sequence from the mold Septoria nodorum. This high degree of sequence conservation in very distantly related species such as human and yeast indicates that this gene has retained a fundamental function throughout evolution.
我们描述了一个人类基因(CLCN3)及其小鼠同源基因(Clcn3)的分离和特性,它们与电压门控氯离子通道(ClC)家族所有先前鉴定的成员具有显著的序列和结构相似性。该基因主要在源自神经外胚层的组织中表达。在大脑中,Clcn3的表达在海马体、嗅觉皮层和嗅球中尤为明显。CLCN3编码一种760个氨基酸的蛋白质,与Clcn3编码的蛋白质仅相差2个氨基酸残基。CLCN3蛋白还与GEF1高度相似,GEF1是酿酒酵母的一种整合膜蛋白,已知参与呼吸作用和铁限制细胞生长,并且与来自小麦壳针孢霉菌的一个DNA序列的预测蛋白产物高度相似。在人类和酵母等亲缘关系非常远的物种中这种高度的序列保守性表明,该基因在整个进化过程中保留了基本功能。