Human RNA 5′-kinase (hClp1) can function as a tRNA splicing enzyme in vivo Journal Article


Authors: Ramirez, A.; Shuman, S.; Schwer, B.
Article Title: Human RNA 5′-kinase (hClp1) can function as a tRNA splicing enzyme in vivo
Abstract: Yeast and human Clp1 proteins are homologous components of the mRNA 3′-cleavage-polyadenylation machinery. Recent studies highlighting an association of human Clp1 (hClp1) with tRNA splicing endonuclease and an intrinsic RNA-specific 5′-OH polynucleotide kinase activity of hClp1 have prompted speculation that Clp1 might play a catalytic role in tRNA splicing in animal cells. Here, we show that expression of hClp1 in budding yeast can complement conditional and lethal mutations in the essential 5′-OH RNA kinase module of yeast or plant tRNA ligases. The tRNA splicing activity of hClp1 in yeast is abolished by mutations in the kinase active site. In contrast, overexpression of yeast Clp1 (yClp1) cannot rescue kinase-defective tRNA ligase mutants, and, unlike hClp1, the purified recombinant yClp1 protein has no detectable RNA kinase activity in vitro. Mutations of the yClp1 ATP-binding site do not affect yeast viability. These findings, and the fact that hClp1 cannot complement growth of a yeast clp1Δ strain, indicate that yeast and human Clp1 proteins are not functional orthologs, despite their structural similarity. Although hClp1 can perform the 5′-end-healing step of a yeast-type tRNA splicing pathway in vivo, it is uncertain whether its kinase activity is necessary for tRNA splicing in human cells, given that other mammalian counterparts of yeast-type tRNA repair enzymes are nonessential in vivo. Published by Cold Spring Harbor Laboratory Press. Copyright © 2008 RNA Society.
Keywords: controlled study; protein expression; unclassified drug; gene mutation; mutation; nonhuman; protein function; mammalia; gene overexpression; in vivo study; animalia; transcription factors; nuclear proteins; amino acid sequence; molecular sequence data; saccharomyces cerevisiae; binding site; protein structure, tertiary; binding sites; saccharomycetales; gene dosage; adenosine triphosphate; protein structure; transfer rna; rna, transfer; rna end healing; polynucleotide 5' hydroxyl kinase; phosphotransferases; polynucleotide 5'-hydroxyl-kinase; rna splicing; enzyme active site; genetic complementation test; nucleic acid binding protein; rna ligase; mrna 3′ processing; polynucleotide kinase activity; protein clp1; phosphoric diester hydrolases; polynucleotide ligases
Journal Title: RNA
Volume: 14
Issue: 9
ISSN: 1355-8382
Publisher: Cold Spring Harbor Laboratory Press  
Date Published: 2008-09-01
Start Page: 1737
End Page: 1745
Language: English
DOI: 10.1261/rna.1142908
PUBMED: 18648070
PROVIDER: scopus
PMCID: PMC2525948
DOI/URL:
Notes: --- - "Cited By (since 1996): 9" - "Export Date: 17 November 2011" - "CODEN: RNARF" - "Source: Scopus"
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  1. Stewart H Shuman
    546 Shuman