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真核生物 CCA-添加酶的异常发生。

Unusual Occurrence of Two Bona-Fide CCA-Adding Enzymes in .

机构信息

Institute for Biochemistry, University of Leipzig, Brüderstraße 34, 04103 Leipzig, Germany.

Interdisciplinary Center for Bioinformatics, Leipzig University, Härtelstraße 16-18, 04107 Leipzig, Germany.

出版信息

Int J Mol Sci. 2020 Jul 23;21(15):5210. doi: 10.3390/ijms21155210.

Abstract

, the model organism for the evolutionary supergroup of Amoebozoa, is a social amoeba that, upon starvation, undergoes transition from a unicellular to a multicellular organism. In its genome, we identified two genes encoding for tRNA nucleotidyltransferases. Such pairs of tRNA nucleotidyltransferases usually represent collaborating partial activities catalyzing CC- and A-addition to the tRNA 3'-end, respectively. In , however, both enzymes exhibit identical activities, representing bona-fide CCA-adding enzymes. Detailed characterization of the corresponding activities revealed that both enzymes seem to be essential and are regulated inversely during different developmental stages of . Intriguingly, this is the first description of two functionally equivalent CCA-adding enzymes using the same set of tRNAs and showing a similar distribution within the cell. This situation seems to be a common feature in Dictyostelia, as other members of this phylum carry similar pairs of tRNA nucleotidyltransferase genes in their genome.

摘要

变形虫是变形虫超群的模式生物,是一种社会性阿米巴虫,在饥饿时会从单细胞生物过渡到多细胞生物。在其基因组中,我们鉴定出两个编码 tRNA 核苷酸转移酶的基因。通常情况下,这种成对的 tRNA 核苷酸转移酶代表分别催化 tRNA 3'端 CC 和 A 添加的协同部分活性。然而,在变形虫中,两种酶都表现出相同的活性,代表真正的 CCA 添加酶。对相应活性的详细特征表明,两种酶似乎都是必需的,并在变形虫的不同发育阶段受到反向调节。有趣的是,这是首次描述使用相同一组 tRNA 并在细胞内具有相似分布的两种功能等效的 CCA 添加酶。这种情况似乎是粘菌纲的一个共同特征,因为该门的其他成员在其基因组中携带类似的 tRNA 核苷酸转移酶基因对。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b017/7432833/a2e540e12031/ijms-21-05210-g001.jpg

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