The role of SON in splicing, development, and disease

Author:

Lu Xinyi1,Ng Huck-Hui12345,Bubulya Paula A.6

Affiliation:

1. Gene Regulation Laboratory; Genome Institute of Singapore; Singapore Singapore

2. Dept of Biological Sciences; National University of Singapore; Singapore Singapore

3. Department of Biochemistry; National University of Singapore; Singapore Singapore

4. Graduate School for Integrative Sciences & Engineering; National University of Singapore; Singapore Singapore

5. School of Biological Sciences; Nanyang Technological University; Singapore Singapore

6. Department of Biological Sciences; Wright State University; Dayton OH USA

Funder

National Institutes of Health

Agency for Science, Technology and Research (A*STAR)

Publisher

Wiley

Subject

Molecular Biology,Biochemistry

Reference59 articles.

1. Decoding of the primary structure of the son3 region in human genome: identification of a new protein with unusual structure and homology with DNA-binding proteins;Berdichevskii;Mol Biol (Mosk),1988

2. The human son gene: the large and small transcripts contains various 5′-terminal sequences;Bliskovskii;Mol Biol (Mosk),1992

3. Analysis of chromosome 21 yeast artificial chromosome (YAC) clones;Tassone;Am J Hum Genet,1992

4. GART, SON, IFNAR, and CRF2-4 genes cluster on human chromosome 21 and mouse chromosome 16;Cheng;Mamm Genome,1993

5. The SON gene encodes a conserved DNA binding protein mapping to human chromosome 21;Khan;Ann Hum Genet,1994

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