Literature DB >> 11353078

Rearrangement of structured RNA via branch migration structures catalysed by the highly related DEAD-box proteins p68 and p72.

O G Rössler1, A Straka, H Stahl.   

Abstract

RNA helicases, like their DNA-specific counterparts, can function as processive enzymes, unwinding RNA with a defined step size in a unidirectional fashion. Recombinant nuclear DEAD-box protein p68 and its close relative p72 are reported here to function in a similar fashion, though the processivity of both RNA helicases appears to be limited to only a few consecutive catalytic steps. The two proteins resemble each other also with regard to other biochemical properties. We have found that both proteins exhibit an RNA annealing in addition to their helicase activity. By using both these activities the enzymes are able in vitro to catalyse rearrangements of RNA secondary structures that otherwise are too stable to be resolved by their low processive helicase activities. RNA rearrangement proceeds via protein induced formation and subsequent resolution of RNA branch migration structures, whereby the latter step is dependent on ATP hydrolysis. The analysed DEAD-box proteins are reminiscent of certain DNA helicases, for example those found in bacteriophages T4 and T7, that catalyse homologous DNA strand exchange in cooperation with the annealing activity of specific single strand binding proteins.

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Year:  2001        PMID: 11353078      PMCID: PMC55448          DOI: 10.1093/nar/29.10.2088

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  59 in total

1.  The DExH protein NPH-II is a processive and directional motor for unwinding RNA.

Authors:  E Jankowsky; C H Gross; S Shuman; A M Pyle
Journal:  Nature       Date:  2000-01-27       Impact factor: 49.962

2.  Splicing takes a holliday.

Authors:  J A Steitz
Journal:  Science       Date:  1992-08-14       Impact factor: 47.728

3.  Pairing of homologous DNA sequences by proteins: evidence for three-stranded DNA.

Authors:  P Hsieh; C S Camerini-Otero; R D Camerini-Otero
Journal:  Genes Dev       Date:  1990-11       Impact factor: 11.361

4.  Complete cDNA sequence of the human p68 protein.

Authors:  P Hloch; G Schiedner; H Stahl
Journal:  Nucleic Acids Res       Date:  1990-05-25       Impact factor: 16.971

5.  Nuclear protein with sequence homology to translation initiation factor eIF-4A.

Authors:  M J Ford; I A Anton; D P Lane
Journal:  Nature       Date:  1988-04-21       Impact factor: 49.962

6.  RNA unwinding activity of SV40 large T antigen.

Authors:  M Scheffner; R Knippers; H Stahl
Journal:  Cell       Date:  1989-06-16       Impact factor: 41.582

7.  RNA helicase activity associated with the human p68 protein.

Authors:  H Hirling; M Scheffner; T Restle; H Stahl
Journal:  Nature       Date:  1989-06-15       Impact factor: 49.962

8.  p68 RNA helicase: identification of a nucleolar form and cloning of related genes containing a conserved intron in yeasts.

Authors:  R D Iggo; D J Jamieson; S A MacNeill; J Southgate; J McPheat; D P Lane
Journal:  Mol Cell Biol       Date:  1991-03       Impact factor: 4.272

9.  Mutational analysis of a DEAD box RNA helicase: the mammalian translation initiation factor eIF-4A.

Authors:  A Pause; N Sonenberg
Journal:  EMBO J       Date:  1992-07       Impact factor: 11.598

10.  Nuclear protein p68 is an RNA-dependent ATPase.

Authors:  R D Iggo; D P Lane
Journal:  EMBO J       Date:  1989-06       Impact factor: 11.598

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  41 in total

1.  The highly related DEAD box RNA helicases p68 and p72 exist as heterodimers in cells.

Authors:  V C Ogilvie; B J Wilson; S M Nicol; N A Morrice; L R Saunders; G N Barber; F V Fuller-Pace
Journal:  Nucleic Acids Res       Date:  2003-03-01       Impact factor: 16.971

Review 2.  Roles of DEAD-box proteins in RNA and RNP Folding.

Authors:  Cynthia Pan; Rick Russell
Journal:  RNA Biol       Date:  2010-11-01       Impact factor: 4.652

3.  The expression of RNA helicase DDX5 is transcriptionally upregulated by calcitriol through a vitamin D response element in the proximal promoter in SiHa cervical cells.

Authors:  Ramiro José González-Duarte; Verna Cázares-Ordoñez; Lorenza Díaz; Víctor Ortíz; Fernando Larrea; Euclides Avila
Journal:  Mol Cell Biochem       Date:  2015-08-28       Impact factor: 3.396

Review 4.  The DDX5/Dbp2 subfamily of DEAD-box RNA helicases.

Authors:  Zheng Xing; Wai Kit Ma; Elizabeth J Tran
Journal:  Wiley Interdiscip Rev RNA       Date:  2018-12-02       Impact factor: 9.957

5.  The Epstein-Barr virus replication protein BBLF2/3 provides an origin-tethering function through interaction with the zinc finger DNA binding protein ZBRK1 and the KAP-1 corepressor.

Authors:  Gangling Liao; Jian Huang; Elizabeth D Fixman; S Diane Hayward
Journal:  J Virol       Date:  2005-01       Impact factor: 5.103

Review 6.  RNA misfolding and the action of chaperones.

Authors:  Rick Russell
Journal:  Front Biosci       Date:  2008-01-01

7.  A novel domain within the DEAD-box protein DP103 is essential for transcriptional repression and helicase activity.

Authors:  Xiaomei Yan; Jean-François Mouillet; Qinglin Ou; Yoel Sadovsky
Journal:  Mol Cell Biol       Date:  2003-01       Impact factor: 4.272

8.  Expression, purification and preliminary crystallographic analysis of recombinant human DEAD-box polypeptide 5.

Authors:  Yook Wah Choi; Sujit Dutta; Burtram C Fielding; Yee Joo Tan
Journal:  Acta Crystallogr Sect F Struct Biol Cryst Commun       Date:  2010-01-28

Review 9.  From unwinding to clamping - the DEAD box RNA helicase family.

Authors:  Patrick Linder; Eckhard Jankowsky
Journal:  Nat Rev Mol Cell Biol       Date:  2011-07-22       Impact factor: 94.444

10.  Cofactor-dependent specificity of a DEAD-box protein.

Authors:  Crystal L Young; Sohail Khoshnevis; Katrin Karbstein
Journal:  Proc Natl Acad Sci U S A       Date:  2013-04-29       Impact factor: 11.205

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