Stein T, Kricke J, Becher D, Lisowsky T
Botanisches Institut I, Heinrich-Heine-Universität Düsseldorf, Universitätsstrasse 1, D-40225 Düsseldorf, Germany.
Curr Genet. 1998 Oct;34(4):287-96. doi: 10.1007/s002940050398.
In previous studies the AZF1 gene has been identified as a second high-copy number suppressor for a special mutant of the gene for the mitochondrial core enzyme of RNA polymerase. The first high-copy number suppressor of this mutant turned out to be the specificity factor MTF1 for mitochondrial transcription. Up to now, the influence of AZF1 on mitochondrial transcription, its precise localization in the cell and the regulation of its expression has not been determined. The putative protein contains a long stretch of poly-asparagine amino acids and a typical zinc-finger domain for DNA binding. These characteristic structural features were used to create the abbreviation AZF1 (Asparagine-rich Zinc Finger protein). An initial computer analysis of the sequence gave no conclusive results for the presence of a mitochondrial import sequence or a typical nuclear-targeting sequence. A recent more-detailed analysis identified a possible nuclear localization signal in the middle of the protein. Disruption of the gene shows no effect on plates with glucose-rich medium or glycerol. In this report a specific polyclonal antibody against Azf1p was prepared and used in cell-fractionation experiments and in electron-microscopic studies. Both of these clearly demonstrate that the AZF1 protein is localized exclusively in the nucleus of the yeast cell. Northern analysis for the expression of the AZF1 messenger RNA under different growth conditions was therefore performed to obtain new insights into the regulation of this gene. Together with the respective protein-expression analysis these data demonstrate that Azf1p is preferentially synthezised in higher amounts under non-fermentable growth conditions. Over-expression of Azf1p in the yeast cell does not influence the expression level of the mitochondrial transcription factor Mtf1p, indicating that the influence of Azf1p on the suppression of the special mitochondrial RNA polymerase mutant is an indirect one. Subcellular investigation of the deletion mutant by electron microscopy identifies specific ultrastructural cell-division defects in comparison to the wild-type.
在先前的研究中,AZF1基因已被鉴定为RNA聚合酶线粒体核心酶基因的一个特殊突变体的第二个高拷贝数抑制子。该突变体的第一个高拷贝数抑制子原来是线粒体转录的特异性因子MTF1。到目前为止,AZF1对线粒体转录的影响、其在细胞中的精确定位及其表达调控尚未确定。推测的蛋白质包含一段长的多聚天冬酰胺氨基酸序列和一个典型的用于DNA结合的锌指结构域。这些特征性结构特征被用于创建缩写AZF1(富含天冬酰胺的锌指蛋白)。对该序列的初步计算机分析未得出关于线粒体导入序列或典型核靶向序列存在的确切结果。最近更详细的分析在蛋白质中部鉴定出一个可能的核定位信号。该基因的破坏在富含葡萄糖的培养基或甘油平板上没有影响。在本报告中,制备了一种针对Azf1p的特异性多克隆抗体,并用于细胞分级实验和电子显微镜研究。这两者都清楚地表明AZF1蛋白仅定位于酵母细胞的细胞核中。因此,进行了不同生长条件下AZF1信使RNA表达的Northern分析,以获得对该基因调控的新见解。连同各自的蛋白质表达分析,这些数据表明Azf1p在非发酵生长条件下优先合成量更高。酵母细胞中Azf1p的过表达不影响线粒体转录因子Mtf1p的表达水平,表明Azf1p对特殊线粒体RNA聚合酶突变体抑制的影响是间接的。通过电子显微镜对缺失突变体进行亚细胞研究,与野生型相比,确定了特定的超微结构细胞分裂缺陷。