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  Plasmodium apicoplast Gln-tRNAGln biosynthesis utilizes a unique GatAB amidotransferase essential for erythrocytic stage parasites

Mailu, B. M., Li, L., Arthur, J., Nelson, T. M., Ramasamy, G., Fritz-Wolf, K., et al. (2015). Plasmodium apicoplast Gln-tRNAGln biosynthesis utilizes a unique GatAB amidotransferase essential for erythrocytic stage parasites. The Journal of Biological Chemistry, 290(49), 29629-29641. doi:10.1074/jbc.M115.655100.

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Other : P. falciparum apicoplast glutamyl-tRNA amidotransferase

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Mailu, Boniface M., Author
Li, Ling, Author
Arthur, Jen, Author
Nelson, Todd M., Author
Ramasamy, Gowthaman, Author
Fritz-Wolf, Karin1, Author           
Becker, Katja, Author
Gardner, Malcolm J., Author
Affiliations:
1Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Max Planck Society, ou_1497700              

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Free keywords: apicoplast; glutamyl-tRNA amidotransferase; glutamyl-tRNA synthetase; malaria; nucleic acid; nucleic acid enzymology; plasmodium; transfer RNA (tRNA)
 Abstract: The malaria parasite Plasmodium falciparum apicoplast indirect aminoacylation pathway utilizes a non-discriminating glutamyl-tRNA synthetase to synthesize Glu-tRNA(Gln) and a glutaminyl-tRNA amidotransferase to convert Glu-tRNA(Gln) to Gln-tRNA(Gln). Here, we show that Plasmodium falciparum and other apicomplexans possess a unique heterodimeric glutamyl-tRNA amidotransferase consisting of GatA and GatB subunits (GatAB). We localized the P. falciparum GatA and GatB subunits to the apicoplast in blood stage parasites and demonstrated that recombinant GatAB converts Glu-tRNA(Gln) to Gln-tRNA(Gln) in vitro. We demonstrate that the apicoplast GatAB-catalyzed reaction is essential to the parasite blood stages because we could not delete the Plasmodium berghei gene encoding GatA in blood stage parasites in vivo. A phylogenetic analysis placed the split between Plasmodium GatB, archaeal GatE, and bacterial GatB prior to the phylogenetic divide between bacteria and archaea. Moreover, Plasmodium GatA also appears to have emerged prior to the bacterial-archaeal phylogenetic divide. Thus, although GatAB is found in Plasmodium, it emerged prior to the phylogenetic separation of archaea and bacteria.

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Language(s): eng - English
 Dates: 2015-08-132015-03-272015-08-282015-12-04
 Publication Status: Issued
 Pages: 12
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
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Title: The Journal of Biological Chemistry
  Other : JBC
Source Genre: Journal
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Publ. Info: Baltimore, etc. : American Society for Biochemistry and Molecular Biology [etc.]
Pages: - Volume / Issue: 290 (49) Sequence Number: - Start / End Page: 29629 - 29641 Identifier: ISSN: 0021-9258
CoNE: https://pure.mpg.de/cone/journals/resource/954925410826_1