Literature DB >> 19878916

Autosomal-dominant retinitis pigmentosa caused by a mutation in SNRNP200, a gene required for unwinding of U4/U6 snRNAs.

Chen Zhao1, Deepti L Bellur, Shasha Lu, Feng Zhao, Michael A Grassi, Sara J Bowne, Lori S Sullivan, Stephen P Daiger, Li Jia Chen, Chi Pui Pang, Kanxing Zhao, Jonathan P Staley, Catharina Larsson.   

Abstract

Mutations in genes associated with the U4/U6-U5 small nuclear ribonucleoprotein (snRNP) complex of the spliceosome are implicated in autosomal-dominant retinitis pigmentosa (adRP), a group of progressive retinal degenerative disorders leading to visual impairment, loss of visual field, and even blindness. We recently assigned a locus (RP33) for adRP to 2cen-q12.1, a region that harbors the SNRNP200 gene encoding hBrr2, another U4/U6-U5 snRNP component that is required for unwinding of U4/U6 snRNAs during spliceosome activation and for disassembly of the spliceosome. Here, we report the identification of a missense mutation, c.3260C>T (p.S1087L), in exon 25 of the SNRNP200 gene in an RP33-linked family. The c.3260C>T substitution showed complete cosegregation with the retinitis pigmentosa (RP) phenotype over four generations, but was absent in a panel of 400 controls. The p.S1087L mutation and p.R1090L, another adRP-associated allele, reside in the "ratchet" helix of the first of two Sec63 domains implicated in the directionality and processivity of nucleic acid unwinding. Indeed, marked defects in U4/U6 unwinding, but not U4/U6-U5 snRNP assembly, were observed in budding yeast for the analogous mutations (N1104L and R1107L) of the corresponding Brr2p residues. The linkage of hBrr2 to adRP suggests that the mechanism of pathogenesis for splicing-factor-related RP may fundamentally derive from a defect in hBrr2-dependent RNA unwinding and a consequent defect in spliceosome activation.

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Year:  2009        PMID: 19878916      PMCID: PMC2775825          DOI: 10.1016/j.ajhg.2009.09.020

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  54 in total

Review 1.  Pre-mRNA splicing and retinitis pigmentosa.

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Journal:  Mol Vis       Date:  2006-10-26       Impact factor: 2.367

2.  The EF-G-like GTPase Snu114p regulates spliceosome dynamics mediated by Brr2p, a DExD/H box ATPase.

Authors:  Eliza C Small; Stephanie R Leggett; Adrienne A Winans; Jonathan P Staley
Journal:  Mol Cell       Date:  2006-08-04       Impact factor: 17.970

3.  The network of protein-protein interactions within the human U4/U6.U5 tri-snRNP.

Authors:  Sunbin Liu; Reinhard Rauhut; Hans-Peter Vornlocher; Reinhard Lührmann
Journal:  RNA       Date:  2006-05-24       Impact factor: 4.942

4.  Structural basis for DNA duplex separation by a superfamily-2 helicase.

Authors:  Katharina Büttner; Sebastian Nehring; Karl-Peter Hopfner
Journal:  Nat Struct Mol Biol       Date:  2007-06-10       Impact factor: 15.369

5.  A role for ubiquitin in the spliceosome assembly pathway.

Authors:  Priya Bellare; Eliza C Small; Xinhua Huang; James A Wohlschlegel; Jonathan P Staley; Erik J Sontheimer
Journal:  Nat Struct Mol Biol       Date:  2008-04-20       Impact factor: 15.369

6.  Exon ligation is proofread by the DExD/H-box ATPase Prp22p.

Authors:  Rabiah M Mayas; Hiroshi Maita; Jonathan P Staley
Journal:  Nat Struct Mol Biol       Date:  2006-05-07       Impact factor: 15.369

7.  Genomic rearrangements of the PRPF31 gene account for 2.5% of autosomal dominant retinitis pigmentosa.

Authors:  Lori S Sullivan; Sara J Bowne; C Robyn Seaman; Susan H Blanton; Richard A Lewis; John R Heckenlively; David G Birch; Dianna Hughbanks-Wheaton; Stephen P Daiger
Journal:  Invest Ophthalmol Vis Sci       Date:  2006-10       Impact factor: 4.799

8.  A novel locus (RP33) for autosomal dominant retinitis pigmentosa mapping to chromosomal region 2cen-q12.1.

Authors:  Chen Zhao; Shasha Lu; Xiaolei Zhou; Xiumei Zhang; Kanxing Zhao; Catharina Larsson
Journal:  Hum Genet       Date:  2006-04-13       Impact factor: 4.132

9.  prp8 mutations that cause human retinitis pigmentosa lead to a U5 snRNP maturation defect in yeast.

Authors:  Kum-Loong Boon; Richard J Grainger; Parastoo Ehsani; J David Barrass; Tatsiana Auchynnikava; Chris F Inglehearn; Jean D Beggs
Journal:  Nat Struct Mol Biol       Date:  2007-10-14       Impact factor: 15.369

10.  Competition between the ATPase Prp5 and branch region-U2 snRNA pairing modulates the fidelity of spliceosome assembly.

Authors:  Yong-Zhen Xu; Charles C Query
Journal:  Mol Cell       Date:  2007-12-14       Impact factor: 17.970

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  71 in total

Review 1.  Developments in RNA splicing and disease.

Authors:  Michael G Poulos; Ranjan Batra; Konstantinos Charizanis; Maurice S Swanson
Journal:  Cold Spring Harb Perspect Biol       Date:  2011-01-01       Impact factor: 10.005

2.  Haploinsufficiency of a spliceosomal GTPase encoded by EFTUD2 causes mandibulofacial dysostosis with microcephaly.

Authors:  Matthew A Lines; Lijia Huang; Jeremy Schwartzentruber; Stuart L Douglas; Danielle C Lynch; Chandree Beaulieu; Maria Leine Guion-Almeida; Roseli Maria Zechi-Ceide; Blanca Gener; Gabriele Gillessen-Kaesbach; Caroline Nava; Geneviève Baujat; Denise Horn; Usha Kini; Almuth Caliebe; Yasemin Alanay; Gulen Eda Utine; Dorit Lev; Jürgen Kohlhase; Arthur W Grix; Dietmar R Lohmann; Ute Hehr; Detlef Böhm; Jacek Majewski; Dennis E Bulman; Dagmar Wieczorek; Kym M Boycott
Journal:  Am J Hum Genet       Date:  2012-02-02       Impact factor: 11.025

Review 3.  Development of gene and stem cell therapy for ocular neurodegeneration.

Authors:  Jing-Xue Zhang; Ning-Li Wang; Qing-Jun Lu
Journal:  Int J Ophthalmol       Date:  2015-06-18       Impact factor: 1.779

Review 4.  Functions and regulation of the Brr2 RNA helicase during splicing.

Authors:  Eva Absmeier; Karine F Santos; Markus C Wahl
Journal:  Cell Cycle       Date:  2016-10-28       Impact factor: 4.534

Review 5.  RNA helicases in splicing.

Authors:  Olivier Cordin; Jean D Beggs
Journal:  RNA Biol       Date:  2012-12-10       Impact factor: 4.652

6.  Spliceosome activation: U4 is the path, stem I is the goal, and Prp8 is the keeper. Let's cheer for the ATPase Brr2!

Authors:  Klaus H Nielsen; Jonathan P Staley
Journal:  Genes Dev       Date:  2012-11-15       Impact factor: 11.361

Review 7.  Genetic characterization and disease mechanism of retinitis pigmentosa; current scenario.

Authors:  Muhammad Umar Ali; Muhammad Saif Ur Rahman; Jiang Cao; Ping Xi Yuan
Journal:  3 Biotech       Date:  2017-07-18       Impact factor: 2.406

Review 8.  RNA Biology in Retinal Development and Disease.

Authors:  Lina Zelinger; Anand Swaroop
Journal:  Trends Genet       Date:  2018-01-31       Impact factor: 11.639

9.  Mutations in SNRPE, which encodes a core protein of the spliceosome, cause autosomal-dominant hypotrichosis simplex.

Authors:  Sandra M Pasternack; Melanie Refke; Elham Paknia; Hans Christian Hennies; Thomas Franz; Niklas Schäfer; Alan Fryer; Maurice van Steensel; Elizabeth Sweeney; Miquel Just; Clemens Grimm; Roland Kruse; Carlos Ferrándiz; Markus M Nöthen; Utz Fischer; Regina C Betz
Journal:  Am J Hum Genet       Date:  2012-12-13       Impact factor: 11.025

10.  Retinitis pigmentosa and allied conditions today: a paradigm of translational research.

Authors:  Carmen Ayuso; Jose M Millan
Journal:  Genome Med       Date:  2010-05-27       Impact factor: 11.117

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