Hermann-Le Denmat S, Sipiczki M, Thuriaux P
Département de Biologie Cellulaire et Moléculaire C.E.A. Saclay, Gif sur Yvette, France.
J Mol Biol. 1994 Jul 1;240(1):1-7. doi: 10.1006/jmbi.1994.1412.
URP2 was cloned as a multicopy suppressor of several temperature-sensitive mutations defective in RNA polymerase III-dependent transcription, but without effect on mutations affecting RNA polymerase I or II. This single-copy gene encodes a hydrophilic polypeptide of 121 amino acid residues with a predicted molecular mass of 13.9 kDa and a basic isoelectric point of 9.7. URP2 is a highly expressed gene, judging from its abundant messenger RNA and strong codon bias. The Urp2p protein is essential for cell growth, as shown by the lethal phenotype of the urp2::HIS3 null allele. Given its striking similarity to the S20 ribosomal polypeptide of rat (55% identical residues), Urp2p is in all likelihood the yeast form of this polypeptide. Both proteins are significantly related to S10, a component of the small ribosomal subunit of Escherichia coli that is known to operate as a transcriptional elongation factor. The latter observation suggests that the suppressor effect of URP2 may be due to a direct involvement of Urp2p in RNA polymerase III-dependent transcription. Alternatively, the overexpression of Urp2p could bypass a partial preribosomal RNA processing defect associated with RNA polymerase III mutants. URP2 was assigned to the left arm of chromosome VIII, and maps between DUR3 and YLF1. The latter gene product has homology to the E. coli gtp1 gene product, and may define a new family of putative GTP-binding proteins.
URP2被克隆为几种对RNA聚合酶III依赖性转录有缺陷的温度敏感突变的多拷贝抑制子,但对影响RNA聚合酶I或II的突变没有影响。这个单拷贝基因编码一个由121个氨基酸残基组成的亲水性多肽,预测分子量为13.9 kDa,碱性等电点为9.7。从其丰富的信使RNA和强烈的密码子偏好来看,URP2是一个高表达基因。urp2::HIS3无效等位基因的致死表型表明,Urp2p蛋白对细胞生长至关重要。鉴于其与大鼠的S20核糖体多肽有惊人的相似性(55%的相同残基),Urp2p很可能是该多肽的酵母形式。这两种蛋白质都与S10有显著关系,S10是大肠杆菌小核糖体亚基的一个组成部分,已知其作为转录延伸因子发挥作用。后一观察结果表明,URP2的抑制作用可能是由于Urp2p直接参与了RNA聚合酶III依赖性转录。或者,Urp2p的过表达可以绕过与RNA聚合酶III突变体相关的部分前核糖体RNA加工缺陷。URP2被定位到第八条染色体的左臂,位于DUR3和YLF1之间。后一个基因产物与大肠杆菌gtp1基因产物有同源性,可能定义了一个新的假定GTP结合蛋白家族。