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Author Notes:

E-mail: kuroyana.end@tmd.ac.jp

Conceived and designed the experiments: GO SO MH HK.

Performed the experiments: GO KO MT YW HK.

Analyzed the data: GO SO HK.

Contributed reagents/materials/analysis tools: GO KO YW SO HK.

Wrote the paper: GO SO MH HK.

The authors have declared that no competing interests exist.

We thank Roger Tsien of University of California San Diego for mRFP1 cDNA.

We thank Monima Alam, Hajime Ito, Takayuki Yamada, Hideto Kudo, Satomi Takei, and Takako Ideue for technical assistance.

We thank Caenorhabditis Genetics Center (CGC) for strains.

Subject:

Research Funding:

We acknowledge support from grants from the Ministry of Education, Culture, Sports, Science, and Technology (MEXT) and from Japan Science and Technology Agency (JST) to HK and MH, and a grant from the National Institute of Health (R01 AR48615) to SO.

GO was supported by Japan Society for the Promotion of Science (JSPS), including JSPS Research Fellowships for Young Scientists.

Keywords:

  • Science & Technology
  • Life Sciences & Biomedicine
  • Genetics & Heredity
  • GENETICS & HEREDITY
  • DEPOLYMERIZING FACTOR/COFILIN PROTEINS
  • BINDING PROTEIN
  • C-ELEGANS
  • IN-VIVO
  • MYOGENIC DIFFERENTIATION
  • SERINE/THREONINE KINASE
  • CHOLINERGIC LOCUS
  • ACTIN-FILAMENTS
  • UNC-60 GENE
  • ENCODES

Muscle-Specific Splicing Factors ASD-2 and SUP-12 Cooperatively Switch Alternative Pre-mRNA Processing Patterns of the ADF/Cofilin Gene in Caenorhabditis elegans

Journal Title:

PLoS Genetics

Volume:

Volume 8, Number 10

Publisher:

, Pages e1002991-e1002991

Type of Work:

Article | Final Publisher PDF

Abstract:

Pre-mRNAs are often processed in complex patterns in tissue-specific manners to produce a variety of protein isoforms from single genes. However, mechanisms orchestrating the processing of the entire transcript are not well understood. Muscle-specific alternative pre-mRNA processing of the unc-60 gene in Caenorhabditis elegans, encoding two tissue-specific isoforms of ADF/cofilin with distinct biochemical properties in regulating actin organization, provides an excellent in vivo model of complex and tissue-specific pre-mRNA processing; it consists of a single first exon and two separate series of downstream exons. Here we visualize the complex muscle-specific processing pattern of the unc-60 pre-mRNA with asymmetric fluorescence reporter minigenes. By disrupting juxtaposed CUAAC repeats and UGUGUG stretch in intron 1A, we demonstrate that these elements are required for retaining intron 1A, as well as for switching the processing patterns of the entire pre-mRNA from non-muscle-type to muscle-type. Mutations in genes encoding muscle-specific RNA-binding proteins ASD-2 and SUP-12 turned the colour of the unc-60 reporter worms. ASD-2 and SUP-12 proteins specifically and cooperatively bind to CUAAC repeats and UGUGUG stretch in intron 1A, respectively, to form a ternary complex in vitro. Immunohistochemical staining and RT-PCR analyses demonstrate that ASD-2 and SUP-12 are also required for switching the processing patterns of the endogenous unc-60 pre-mRNA from UNC-60A to UNC-60B in muscles. Furthermore, systematic analyses of partially spliced RNAs reveal the actual orders of intron removal for distinct mRNA isoforms. Taken together, our results demonstrate that muscle-specific splicing factors ASD-2 and SUP-12 cooperatively promote muscle-specific processing of the unc-60 gene, and provide insight into the mechanisms of complex pre-mRNA processing; combinatorial regulation of a single splice site by two tissue-specific splicing regulators determines the binary fate of the entire transcript.

Copyright information:

© 2012 Ohno et al.

This is an Open Access work distributed under the terms of the Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/).
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