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Functional crosstalk between exon enhancers, polypyrimidine tracts and branchpoint sequences
Author(s) -
Buvoli Massimo,
Mayer Stephen A.,
Patton James G.
Publication year - 1997
Publication title -
the embo journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.484
H-Index - 392
eISSN - 1460-2075
pISSN - 0261-4189
DOI - 10.1093/emboj/16.23.7174
Subject(s) - biology , exon , crosstalk , genetics , enhancer , polypyrimidine tract , computational biology , gene , alternative splicing , transcription factor , physics , optics
We recently identified enhancer elements that activate the weak 3′ splice site of α‐tropomyosin exon 2 as well as a variety of heterologous weak 3′ splice sites. To understand their mechanism of action, we devised an iterative selection strategy to identify functional pyrimidine tracts and branchpoint sequences in the presence or absence of enhancer elements. Surprisingly, we found that strong pyrimidine tracts were selected regardless of the presence of enhancer elements. However, the presence of enhancer elements resulted in the selection of multiple, non‐consensus branchpoint sequences. Thus, enhancer elements apparently activate weak 3′ splice sites primarily by increasing the efficiency of splicing of introns containing branchpoint sequences with less than optimal U2–branchpoint pairing arrangements. Comparison of consensus sequences from both our selection strategy and compilations of published intron sequences suggests that exon enhancer elements could be widespread and play an important role in the selection of 3′ splice sites.

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