Wolfe Devin M, Pearce David A
Center for Aging and Developmental Biology, Aab Institute of Biomedical Sciences, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
Neuromolecular Med. 2006;8(3):279-306. doi: 10.1385/NMM:8:3:279.
Regulation of the concentration of ions within a cell is mediated by their specific transport and sequestration across cellular membranes. This regulation constitutes a major factor in the maintenance of correct cellular homeostasis, with the transport occurring through the action of a large number of different channel proteins localized to the plasma membrane as well as to various organelles. These ion channels vary in specificity from broad (cationic vs anionic) to highly selective (chloride vs sodium). Mutations in many of these channels result in a large number of human diseases, collectively termed channelopathies. Characterization of many of these channels has been undertaken in a variety of both prokaryotic and eukaryotic organisms. Among these organisms is the budding yeast Saccharomyces cerevisiae. Possessing a fully annotated genome, S. cerevisiae would appear to be an ideal organism in which to study this class of proteins associated to diseases. We have compiled and reviewed a list of yeast ion channels, each possessing a human homolog implicated in a channelopathy. Although yeast has been used for the study of other human disease, it has been under utilized for channelopathy research. The utility of using yeast as a model system for studying ion channels associated to human disease is illustrated using yeast lacking the GEF1 gene product that encodes the human homolog to the chloride channel CLC-3.
细胞内离子浓度的调节是通过它们跨细胞膜的特异性转运和隔离来介导的。这种调节是维持正确细胞稳态的一个主要因素,转运通过大量定位于质膜以及各种细胞器的不同通道蛋白的作用来进行。这些离子通道的特异性各不相同,从宽泛的(阳离子对阴离子)到高度选择性的(氯离子对钠离子)。许多这些通道的突变会导致大量人类疾病,统称为通道病。在多种原核生物和真核生物中都对许多这类通道进行了表征。其中包括芽殖酵母酿酒酵母。酿酒酵母拥有完全注释的基因组,似乎是研究这类与疾病相关蛋白质的理想生物体。我们汇编并综述了一份酵母离子通道列表,每个通道都有一个与通道病相关的人类同源物。尽管酵母已被用于研究其他人类疾病,但它在通道病研究中一直未得到充分利用。以缺乏编码人类氯离子通道CLC - 3同源物的GEF1基因产物的酵母为例,说明了将酵母用作研究与人类疾病相关离子通道的模型系统的实用性。