A new RNA helicase isolated from HeLa cells that catalytically translocates in the 3′ to 5′ direction Journal Article


Authors: Lee, C. G.; Hurwitz, J.
Article Title: A new RNA helicase isolated from HeLa cells that catalytically translocates in the 3′ to 5′ direction
Abstract: We have purified an RNA helicase to near homogeneity from nuclear extracts of HeLa cells. The enzyme migrated as a 130-kDa protein upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis and exhibited a sedimentation coefficient of 6.4 on glycerol gradient centrifugation. The enzyme translocated in a 3′ to 5′ direction and acted catalytically, displacing at least a 4-fold molar excess of duplex RNA compared with the enzyme added. All eight common nucleoside triphosphates supported RNA helicase activity at relatively low concentrations (Km in values in the 15-20 μM level). In the presence of RNA and some single-stranded DNAs, the RNA helicase hydrolyzed all nucleoside triphosphates to nucleoside diphosphates and inorganic phosphate. The enzyme displaced deoxyribooligonucleotides provided they were hydrogen-bonded to RNA possessing 3′ single-stranded regions, but it did not displace ribooligonucleotides hydrogen-bonded to DNA containing 3′ single-stranded regions. The enzyme, in the absence of ATP, binds to both single-stranded RNA and DNA, but the amount of complex formed with RNA was 20-fold greater than the complex formed with DNA. In both cases, the complex formed in the absence of ATP was rapidly reversed by the addition of ATP and not by adenyl-5′-yl (β,γ-methylene)-diphosphate. We propose that the enzyme can bind to both single-stranded RNA and DNA and hydrolyze ATP, but by virtue of its greater stability on RNA, the enzyme can only translocate on RNA possessing 3′ single-stranded regions.
Keywords: enzyme activity; enzyme substrate; hela cell; hela cells; rna; dna; molecular sequence data; kinetics; substrate specificity; base sequence; hydrogen bond; helicase; catalysis; adenosine triphosphate; single stranded dna; enzyme kinetics; enzyme binding; rna helicases; hydrolysis; enzyme purification; enzyme mechanism; polyacrylamide gel electrophoresis; electrophoresis, polyacrylamide gel; rna, double-stranded; enzyme stability; nucleic acid heteroduplexes; enzyme isolation; rna nucleotidyltransferases; human; priority journal; article; support, non-u.s. gov't; support, u.s. gov't, non-p.h.s.; deoxyribonucleotides
Journal Title: Journal of Biological Chemistry
Volume: 267
Issue: 7
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 1992-03-05
Start Page: 4398
End Page: 4407
Language: English
PUBMED: 1537828
PROVIDER: scopus
DOI/URL:
Notes: Article -- Source: Scopus
Citation Impact
MSK Authors
  1. Jerard Hurwitz
    206 Hurwitz
  2. Chee-Gun   Lee
    11 Lee