Müller J M, Meyer H H, Ruhrberg C, Stamp G W, Warren G, Shima D T
Cell Biology Laboratory, Imperial Cancer Research Fund, Lincoln's Inn Fields, London WC2A 3PX, UK.
J Biol Chem. 1999 Apr 9;274(15):10154-62. doi: 10.1074/jbc.274.15.10154.
Here we present the first description of the genomic organization, transcriptional regulatory sequences, and adult and embryonic gene expression for the mouse p97(CDC48) AAA ATPase. Clones representing two distinct p97 genes were isolated in a genomic library screen, one of them likely representing a non-functional processed pseudogene. The coding region of the gene encoding the functional mRNA is interrupted by 16 introns and encompasses 20.4 kilobase pairs. Definition of the transcriptional initiation site and sequence analysis showed that the gene contains a TATA-less, GC-rich promoter region with an initiator element spanning the transcription start site. Cis-acting elements necessary for basal transcription activity reside within 410 base pairs of the flanking region as determined by transient transfection assays. In immunohistological analyses, p97 was widely expressed in embryos and adults, but protein levels were tightly controlled in a cell type- and cell differentiation-dependent manner. A remarkable heterogeneity in p97 immunostaining was found on a cellular level within a given tissue, and protein amounts in the cytoplasm and nucleus varied widely, suggesting a highly regulated and intermittent function for p97. This study provides the basis for a detailed analysis of the complex regulation of p97 and the reagents required for assessing its functional significance using targeted gene manipulation in the mouse.
在此,我们首次描述了小鼠p97(CDC48)AAA型ATP酶的基因组组织、转录调控序列以及成年和胚胎期基因表达情况。在基因组文库筛选中分离出了代表两个不同p97基因的克隆,其中一个可能代表一个无功能的加工假基因。编码功能性mRNA的基因的编码区被16个内含子打断,长度为20.4千碱基对。转录起始位点的确定和序列分析表明,该基因含有一个无TATA盒、富含GC的启动子区域,其起始子元件跨越转录起始位点。通过瞬时转染实验确定,基础转录活性所需的顺式作用元件位于侧翼区域的410个碱基对内。在免疫组织学分析中,p97在胚胎和成年个体中广泛表达,但蛋白质水平以细胞类型和细胞分化依赖性方式受到严格控制。在给定组织内的细胞水平上发现p97免疫染色存在显著异质性,细胞质和细胞核中的蛋白质量差异很大,这表明p97具有高度调控且间歇性的功能。本研究为详细分析p97的复杂调控以及在小鼠中使用靶向基因操作评估其功能意义所需的试剂提供了基础。