The formation of the active spliceosome, its recruitment to active areas of transcription, and its role in pre-mRNA splicing depends on the association of a number of multifunctional serine/arginine-rich (SR) proteins. ZNF265 is an arginine/serine-rich (RS) domain containing zinc finger protein with conserved pre-mRNA splicing protein motifs. Here we show that ZNF265 immunoprecipitates from splicing extracts in association with mRNA, and that it is able to alter splicing patterns of Tra2-β1 transcripts in a dose-dependent manner in HEK 293 cells. Yeast two-hybrid analysis and immunoprecipitation indicated interaction of ZNF265 with the essential splicing factor proteins U1-70K and U2AF35. Confocal microscopy demonstrated colocalization of ZNF265 with the motor neuron gene product SMN, the snRNP protein U1-70K, the SR protein SC35, and with the transcriptosomal components p300 and YY1. Transfection of HT-1080 cells with ZNF265–EGFP fusion constructs showed that nuclear localization of ZNF265 required the RS domain. Alignment with other RS domain–containing proteins revealed a high degree of SR dipeptide conservation. These data show that ZNF265 functions as a novel component of the mRNA processing machinery.
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9 July 2001
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July 09 2001
ZNF265—a novel spliceosomal protein able to induce alternative splicing
David J. Adams,
David J. Adams
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
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Louise van der Weyden,
Louise van der Weyden
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
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Akila Mayeda,
Akila Mayeda
3University of Miami School of Medicine, Department of Biochemistry and Molecular Biology, Miami, FL 33136
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Stefan Stamm,
Stefan Stamm
4University of Erlangen, Institute of Biochemistry, 91054 Erlangen, Germany
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Brian J. Morris,
Brian J. Morris
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
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John E.J. Rasko
John E.J. Rasko
2Gene Therapy Research Unit, Centenary Institute of Cancer Medicine & Cell Biology and Sydney Cancer Centre, Royal Prince Alfred Hospital, Sydney, NSW 2006, Australia
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David J. Adams
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
Louise van der Weyden
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
Akila Mayeda
3University of Miami School of Medicine, Department of Biochemistry and Molecular Biology, Miami, FL 33136
Stefan Stamm
4University of Erlangen, Institute of Biochemistry, 91054 Erlangen, Germany
Brian J. Morris
1The University of Sydney, Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research
John E.J. Rasko
2Gene Therapy Research Unit, Centenary Institute of Cancer Medicine & Cell Biology and Sydney Cancer Centre, Royal Prince Alfred Hospital, Sydney, NSW 2006, Australia
Address correspondence to Brian J. Morris, D.Sc., Basic & Clinical Genomics Laboratory, Department of Physiology and Institute for Biomedical Research, Bldg F13, The University of Sydney, NSW 2006, Australia. Tel.: 61-2-9351-3688. Fax: 61-2-9351-2227. E-mail: [email protected]
*
Abbreviations used in this paper: EGFP, enhanced green fluorescent protein; NLS, nuclear localization signal; RS, arginine/serine-rich; SMN, survival of motor neuron; snRNP, small nuclear ribonucleoprotein particle; SR, serine/arginine-rich.
Received:
October 16 2000
Revision Received:
May 23 2001
Accepted:
May 30 2001
Online ISSN: 1540-8140
Print ISSN: 0021-9525
The Rockefeller University Press
2001
J Cell Biol (2001) 154 (1): 25–32.
Article history
Received:
October 16 2000
Revision Received:
May 23 2001
Accepted:
May 30 2001
Citation
David J. Adams, Louise van der Weyden, Akila Mayeda, Stefan Stamm, Brian J. Morris, John E.J. Rasko; ZNF265—a novel spliceosomal protein able to induce alternative splicing . J Cell Biol 9 July 2001; 154 (1): 25–32. doi: https://doi.org/10.1083/jcb.200010059
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