O'Mahony D J, Rothblum L I
Sigfried and Janet Weis Center for Research, Geisinger Clinic, Danville, PA 17822.
Proc Natl Acad Sci U S A. 1991 Apr 15;88(8):3180-4. doi: 10.1073/pnas.88.8.3180.
The structure of the rat homologue of the RNA polymerase I transcription factor UBF was investigated. The sequence of the protein was deduced from the sequence of overlapping cDNAs isolated from a cDNA library and from clones of the products generated by the polymerase chain reaction from random-primed, first-strand cDNA. The sequences of these clones indicated that there were two mRNAs for UBF and that the encoded proteins were similar but not identical. One form of rat UBF was essentially identical to human UBF. The second class of UBF mRNA contained an in-frame "deletion" in the coding region that results in the deletion of 37 amino acids from the predicted protein sequence. This deletion reduces the predicted molecular size of the encoded form of UBF by approximately 4400 from 89.4 kDa to 85 kDa and significantly alters the structure of one of the four HMG-1 homology regions (HMG box-2) in that form of UBF. Evidence for the existence of two mRNAs in rat cells was confirmed by a probe protection assay, and we provide evidence that other vertebrate cells contain these same two forms of UBF mRNA. These results are consistent with the observation that UBF purified from four different vertebrates migrates as two bands upon SDS/PAGE. It has been hypothesized that the HMG motifs are the DNA-binding domains of UBF. Altering one of these "boxes," as in the second form of UBF, may alter the functional characteristics of the transcription factor. Thus, the existence of different forms of UBF may have important ramifications for transcription by RNA polymerase I.
对RNA聚合酶I转录因子UBF的大鼠同源物的结构进行了研究。该蛋白质的序列是从从cDNA文库中分离出的重叠cDNA序列以及通过聚合酶链反应从随机引物的第一链cDNA产生的产物克隆中推导出来的。这些克隆的序列表明,UBF有两种mRNA,并且编码的蛋白质相似但不相同。大鼠UBF的一种形式与人类UBF基本相同。第二类UBF mRNA在编码区包含一个框内“缺失”,这导致预测的蛋白质序列中缺失37个氨基酸。这种缺失使UBF编码形式的预测分子大小从89.4 kDa减少了约4400,降至85 kDa,并显著改变了该形式UBF中四个HMG-1同源区域之一(HMG box-2)的结构。通过探针保护试验证实了大鼠细胞中存在两种mRNA,并且我们提供证据表明其他脊椎动物细胞也含有这两种相同形式的UBF mRNA。这些结果与从四种不同脊椎动物中纯化的UBF在SDS/PAGE上呈现两条带的观察结果一致。据推测,HMG基序是UBF的DNA结合结构域。如第二种形式的UBF那样改变其中一个“框”可能会改变转录因子的功能特性。因此,不同形式的UBF的存在可能对RNA聚合酶I的转录具有重要影响。