A naturally occurring mini-alanyl-tRNA synthetase. 2023

Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
Department of Life Sciences, National Central University, Zhongli District, Taoyuan, 320317, Taiwan.

Alanyl-tRNA synthetase (AlaRS) retains a conserved prototype structure throughout its biology, consisting of catalytic, tRNA-recognition, editing, and C-Ala domains. The catalytic and tRNA-recognition domains catalyze aminoacylation, the editing domain hydrolyzes mischarged tRNAAla, and C-Ala-the major tRNA-binding module-targets the elbow of the L-shaped tRNAAla. Interestingly, a mini-AlaRS lacking the editing and C-Ala domains is recovered from the Tupanvirus of the amoeba Acanthamoeba castellanii. Here we show that Tupanvirus AlaRS (TuAlaRS) is phylogenetically related to its host's AlaRS. Despite lacking the conserved amino acid residues responsible for recognition of the identity element of tRNAAla (G3:U70), TuAlaRS still specifically recognized G3:U70-containing tRNAAla. In addition, despite lacking C-Ala, TuAlaRS robustly binds and charges microAla (an RNA substrate corresponding to the acceptor stem of tRNAAla) as well as tRNAAla, indicating that TuAlaRS exclusively targets the acceptor stem. Moreover, this mini-AlaRS could functionally substitute for yeast AlaRS in vivo. This study suggests that TuAlaRS has developed a new tRNA-binding mode to compensate for the loss of C-Ala.

UI MeSH Term Description Entries
D004926 Escherichia coli A species of gram-negative, facultatively anaerobic, rod-shaped bacteria (GRAM-NEGATIVE FACULTATIVELY ANAEROBIC RODS) commonly found in the lower part of the intestine of warm-blooded animals. It is usually nonpathogenic, but some strains are known to produce DIARRHEA and pyogenic infections. Pathogenic strains (virotypes) are classified by their specific pathogenic mechanisms such as toxins (ENTEROTOXIGENIC ESCHERICHIA COLI), etc. Alkalescens-Dispar Group,Bacillus coli,Bacterium coli,Bacterium coli commune,Diffusely Adherent Escherichia coli,E coli,EAggEC,Enteroaggregative Escherichia coli,Enterococcus coli,Diffusely Adherent E. coli,Enteroaggregative E. coli,Enteroinvasive E. coli,Enteroinvasive Escherichia coli
D000412 Alanine-tRNA Ligase An enzyme that activates alanine with its specific transfer RNA. EC 6.1.1.7. Alanyl T RNA Synthetase,Ala-tRNA Ligase,Alanyl-tRNA Synthetase,Ala tRNA Ligase,Alanine tRNA Ligase,Alanyl tRNA Synthetase,Ligase, Ala-tRNA,Ligase, Alanine-tRNA,Synthetase, Alanyl-tRNA
D012343 RNA, Transfer The small RNA molecules, 73-80 nucleotides long, that function during translation (TRANSLATION, GENETIC) to align AMINO ACIDS at the RIBOSOMES in a sequence determined by the mRNA (RNA, MESSENGER). There are about 30 different transfer RNAs. Each recognizes a specific CODON set on the mRNA through its own ANTICODON and as aminoacyl tRNAs (RNA, TRANSFER, AMINO ACYL), each carries a specific amino acid to the ribosome to add to the elongating peptide chains. Suppressor Transfer RNA,Transfer RNA,tRNA,RNA, Transfer, Suppressor,Transfer RNA, Suppressor,RNA, Suppressor Transfer
D012344 RNA, Transfer, Ala A transfer RNA which is specific for carrying alanine to sites on the ribosomes in preparation for protein synthesis. Alanine-Specific tRNA,Transfer RNA, Ala,tRNAAla,tRNA(Ala),Ala Transfer RNA,Alanine Specific tRNA,RNA, Ala Transfer,tRNA, Alanine-Specific

Related Publications

Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
April 2016, The Journal of biological chemistry,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
November 2023, Protein science : a publication of the Protein Society,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
April 1996, Archives of biochemistry and biophysics,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
January 1976, Zhurnal evoliutsionnoi biokhimii i fiziologii,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
April 2019, Nucleic acids research,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
September 2021, Nucleic acids research,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
February 2020, Cerebellum (London, England),
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
September 1984, Archives of biochemistry and biophysics,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
July 2009, Proceedings of the National Academy of Sciences of the United States of America,
Titi Rindi Antika, and Dea Jolie Chrestella, and Yi-Kuan Tseng, and Yi-Hung Yeh, and Chwan-Deng Hsiao, and Chien-Chia Wang
January 2019, Frontiers in neurology,
Copied contents to your clipboard!