Hofsteenge J, Matthies R, Stone S R
Friedrich Miescher-Institut, Basel, Switzerland.
Biochemistry. 1989 Dec 12;28(25):9806-13. doi: 10.1021/bi00451a040.
In most tissues, ribonucleases (RNases) are found in a latent form complexed with ribonuclease inhibitor (RI). To examine whether these so-called cytoplasmic RNases belong to the same superfamily as pancreatic RNases, we have purified from porcine liver two such RNases (PL1 and PL3) and examined their primary structures. It was found that RNase PL1 belonged to the same family as human RNase Us [Beintema et al. (1988) Biochemistry 27, 4530-4538] and bovine RNase K2 [Irie et al. (1988) J. Biochem. (Tokyo) 104, 289-296]. RNase PL3 was found to be a hitherto structurally uncharacterized type of RNase. Its polypeptide chain of 119 amino acid residues was N-terminally blocked with pyroglutamic acid, and its sequence differed at 63 positions with that of the pancreatic enzyme. All residues important for catalysis and substrate binding have been conserved. Comparison of the primary structure of RNase PL3 with that of its bovine counterpart (RNase BL4; M. Irie, personal communication) revealed an unusual conservation for this class of enzymes; the 2 enzymes were identical at 112 positions. Moreover, comparison of the amino acid compositions of these RNases with that of a human colon carcinoma-derived RNase, RNase HT-29 [Shapiro et al. (1986) Biochemistry 25, 7255-7264], suggested that these three proteins are orthologous gene products. The structural characteristics of RNases PL1 and PL3 were typical of secreted RNases, and this observation questions the proposed cytoplasmic origin of these RI-associated enzymes.
在大多数组织中,核糖核酸酶(RNases)以与核糖核酸酶抑制剂(RI)复合的潜伏形式存在。为了研究这些所谓的细胞质RNases是否与胰腺RNases属于同一超家族,我们从猪肝中纯化了两种这样的RNases(PL1和PL3)并研究了它们的一级结构。发现RNase PL1与人类RNase Us [Beintema等人(1988年)《生物化学》27卷,4530 - 4538页]和牛RNase K2 [Irie等人(1988年)《生物化学杂志》(东京)104卷,289 - 296页]属于同一家族。发现RNase PL3是一种迄今结构未明确的RNase类型。其119个氨基酸残基的多肽链在N端被焦谷氨酸封闭,其序列与胰腺酶在63个位置不同。所有对催化和底物结合重要的残基都得以保留。将RNase PL3的一级结构与其牛对应物(RNase BL4;M. Irie,个人交流)进行比较,发现这类酶存在异常的保守性;这两种酶在112个位置相同。此外,将这些RNases的氨基酸组成与一种源自人类结肠癌的RNase,RNase HT - 29 [Shapiro等人(1986年)《生物化学》25卷,7255 - 7264页]的氨基酸组成进行比较,表明这三种蛋白质是直系同源基因产物。RNases PL1和PL3的结构特征是分泌型RNases的典型特征,这一观察结果对这些与RI相关的酶所提出的细胞质起源提出了质疑。