IDENTIFICATION OF A SPECIFIC EXON SEQUENCE THAT IS A MAJOR DETERMINANT IN THE SELECTION BETWEEN A NATURAL AND A CRYPTIC-5' SPLICE SITE

被引:44
作者
DOMENJOUD, L [1 ]
GALLINARO, H [1 ]
KISTER, L [1 ]
MEYER, S [1 ]
JACOB, M [1 ]
机构
[1] FAC MED STRASBOURG,INST CHIM BIOL,CNRS,GENET MOLEC EUCARYOTES LAB,INSERM,U184,F-67085 STRASBOURG,FRANCE
关键词
D O I
10.1128/MCB.11.9.4581
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The first intron of the early region 3 from adenovirus type 2 contains a cryptic 5' splice site, Dcrl, 74 nucleotides downstream from the natural site D1. The cryptic site can be activated when the natural site is inactivated by mutagenesis. To investigate the basis for selection between a natural and a crptic 5' splice site, we searched for cis-acting elements responsible for the exclusive selection of the natural site. We show that both the relative intrinsic strength of the sites and the sequence context affect the selection. A 120-nucleotide segment located at the 3' end of exon 1 enhances splicing at the proximal site D1; in its absence the two sites are used according to their strength. Thus, three cis-acting elements are involved in the silencing of the cryptic site: the sequence of D1, the sequence of Dcr1, and an upstream exonic sequence. We show that the exonic element folds, in solution, into a 113-nucleotide-long stem-loop structure. We propose that this potential stem-loop structure which is located 6 nucleotides upstream of the exon 1-intron junction is responsible for the preferential use of the natural 5' splice site.
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页码:4581 / 4590
页数:10
相关论文
共 62 条
[1]   LEADER-TO-LEADER SPLICING IS REQUIRED FOR EFFICIENT PRODUCTION AND ACCUMULATION OF POLYOMAVIRUS LATE MESSENGER-RNAS [J].
ADAMI, GR ;
MARLOR, CW ;
BARRETT, NL ;
CARMICHAEL, GG .
JOURNAL OF VIROLOGY, 1989, 63 (01) :85-93
[2]   SEQUENCE REQUIREMENTS FOR SPLICING OF HIGHER EUKARYOTIC NUCLEAR PRE-MESSENGER-RNA [J].
AEBI, M ;
HORNIG, H ;
PADGETT, RA ;
REISER, J ;
WEISSMANN, C .
CELL, 1986, 47 (04) :555-565
[3]   HIGHER-ORDER STRUCTURE OF DOMAIN-III IN ESCHERICHIA-COLI 16S RIBOSOMAL-RNA, 30S SUBUNIT AND 70S RIBOSOME [J].
BAUDIN, F ;
EHRESMANN, C ;
ROMBY, P ;
MOUGEL, M ;
COLIN, J ;
LEMPEREUR, L ;
BACHELLERIE, JP ;
EBEL, JP ;
EHRESMANN, B .
BIOCHIMIE, 1987, 69 (10) :1081-1096
[4]  
BREATHNACH R, 1981, ANNU REV BIOCHEM, V50, P349, DOI 10.1146/annurev.bi.50.070181.002025
[5]   ALTERNATIVE SPLICING - A UBIQUITOUS MECHANISM FOR THE GENERATION OF MULTIPLE PROTEIN ISOFORMS FROM SINGLE GENES [J].
BREITBART, RE ;
ANDREADIS, A ;
NADALGINARD, B .
ANNUAL REVIEW OF BIOCHEMISTRY, 1987, 56 :467-495
[6]   REGULATION BY HIV REV DEPENDS UPON RECOGNITION OF SPLICE SITES [J].
CHANG, DD ;
SHARP, PA .
CELL, 1989, 59 (05) :789-795
[7]   THE 216-NUCLEOTIDE INTRON OF THE E1A PRE-MESSENGER RNA CONTAINS A HAIRPIN STRUCTURE THAT PERMITS UTILIZATION OF UNUSUALLY DISTANT BRANCH ACCEPTORS [J].
CHEBLI, K ;
GATTONI, R ;
SCHMITT, P ;
HILDWEIN, G ;
STEVENIN, J .
MOLECULAR AND CELLULAR BIOLOGY, 1989, 9 (11) :4852-4861
[8]  
CHEN EY, 1985, DNA CELL BIOL, V4, P1023
[9]   DNA-SEQUENCE OF THE EARLY E3 TRANSCRIPTION UNIT OF ADENOVIRUS-5 [J].
CLADARAS, C ;
WOLD, WSM .
VIROLOGY, 1985, 140 (01) :28-43
[10]   CIS REQUIREMENTS FOR ALTERNATIVE SPLICING OF THE CARDIAC TROPONIN-T PRE-MESSENGER RNA [J].
COOPER, TA ;
CARDONE, MH ;
ORDAHL, CP .
NUCLEIC ACIDS RESEARCH, 1988, 16 (17) :8443-8465