Ogilvie M K, Hanas J S
University of Oklahoma College of Medicine, Department of Biochemistry and Molecular Biology, Oklahoma City 73104, USA.
Gene. 1997 Dec 12;203(2):103-12. doi: 10.1016/s0378-1119(97)00499-x.
TFIIIA regulates 5S rRNA synthesis and is the prototype of the Cys2His2 superfamily of zinc finger proteins. Because the TFIIIA aa sequence is highly diverged, elucidating species variation in this factor will yield insights into how zinc fingers bind DNA and how this protein regulates RNAPIII transcription. This study reports the identification, cloning and functional divergence of oocyte TFIIIA from the channel catfish. Catfish oocyte TFIIIA was identified by its association with 5S rRNA in immature ovarian tissue, its molecular weight, and by peptide sequence similarities with Xenopus TFIIIA. The cDNA for this factor was cloned by degenerate PCR and found to code for nine Cys2His2 zinc fingers and a C-terminal tail; only about 40% aa sequence identity was observed with Xenopus TFIIIA. The N-terminal region of catfish TFIIIA contains the oocyte-specific initiating Met amino acid and accompanying conserved residues found in amphibian TFIIIAs but not found in yeast or human TFIIIAs. Catfish TFIIIA lacks the conserved transcription activation domain in its C-terminal tail found in amphibian and human TFIIIA. Catfish TFIIIA was able to bind the catfish and Xenopus 5S RNA genes but did not efficiently promote 5S gene transcription in a rodent RNAPIII transcription system, as did Xenopus TFIIIA. Amino acid conservation in catfish, amphibian, and human TFIIIA zinc fingers allows deduction of possible finger recognition helix alignments along the conserved 5S gene ICRs. For the three N-terminal fingers, this leads to deduction of a compact polypeptide structure with conserved basic residues contacting conserved G nts in the 5S gene C box.
TFIIIA调节5S rRNA的合成,是锌指蛋白Cys2His2超家族的原型。由于TFIIIA的氨基酸序列高度分化,阐明该因子的物种差异将有助于深入了解锌指如何结合DNA以及该蛋白如何调节RNA聚合酶III转录。本研究报告了从斑点叉尾鮰中鉴定、克隆卵母细胞TFIIIA及其功能差异。斑点叉尾鮰卵母细胞TFIIIA是通过其与未成熟卵巢组织中的5S rRNA的关联、分子量以及与非洲爪蟾TFIIIA的肽序列相似性来鉴定的。该因子的cDNA通过简并PCR克隆,发现编码九个Cys2His2锌指和一个C末端尾巴;与非洲爪蟾TFIIIA仅观察到约40%的氨基酸序列同一性。斑点叉尾鮰TFIIIA的N末端区域包含卵母细胞特异性起始甲硫氨酸和在两栖动物TFIIIA中发现但在酵母或人类TFIIIA中未发现的伴随保守残基。斑点叉尾鮰TFIIIA在其C末端尾巴中缺乏在两栖动物和人类TFIIIA中发现的保守转录激活域。斑点叉尾鮰TFIIIA能够结合斑点叉尾鮰和非洲爪蟾的5S RNA基因,但在啮齿动物RNA聚合酶III转录系统中不能像非洲爪蟾TFIIIA那样有效地促进5S基因转录。斑点叉尾鮰、两栖动物和人类TFIIIA锌指中的氨基酸保守性允许推断沿着保守的5S基因ICR可能的指识别螺旋排列。对于三个N末端指,这导致推断出一种紧凑的多肽结构,其中保守的碱性残基与5S基因C框中的保守G核苷酸接触。