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Items: 1 to 50 of 67

1.

Can spectral-spatial image segmentation be used to discriminate experimental burn wounds?

Paluchowski LA, Nordgaard HB, Bjorgan A, Hov H, Berget SM, Randeberg LL.

J Biomed Opt. 2016 Oct 1;21(10):101413. doi: 10.1117/1.JBO.21.10.101413.

PMID:
27228458
2.

A subset of nuclear receptor coregulators act as coupling proteins during synthesis and maturation of RNA transcripts.

Auboeuf D, Dowhan DH, Dutertre M, Martin N, Berget SM, O'Malley BW.

Mol Cell Biol. 2005 Jul;25(13):5307-16. Review. No abstract available.

3.

Steroid hormone receptor coactivation and alternative RNA splicing by U2AF65-related proteins CAPERalpha and CAPERbeta.

Dowhan DH, Hong EP, Auboeuf D, Dennis AP, Wilson MM, Berget SM, O'Malley BW.

Mol Cell. 2005 Feb 4;17(3):429-39.

4.

Differential recruitment of nuclear receptor coactivators may determine alternative RNA splice site choice in target genes.

Auboeuf D, Dowhan DH, Kang YK, Larkin K, Lee JW, Berget SM, O'Malley BW.

Proc Natl Acad Sci U S A. 2004 Feb 24;101(8):2270-4.

5.

CoAA, a nuclear receptor coactivator protein at the interface of transcriptional coactivation and RNA splicing.

Auboeuf D, Dowhan DH, Li X, Larkin K, Ko L, Berget SM, O'Malley BW.

Mol Cell Biol. 2004 Jan;24(1):442-53.

6.

Coordinate regulation of transcription and splicing by steroid receptor coregulators.

Auboeuf D, Hönig A, Berget SM, O'Malley BW.

Science. 2002 Oct 11;298(5592):416-9.

7.

Regulation of alternative splicing by the ATP-dependent DEAD-box RNA helicase p72.

Hönig A, Auboeuf D, Parker MM, O'Malley BW, Berget SM.

Mol Cell Biol. 2002 Aug;22(16):5698-707.

8.

The RNA binding protein YB-1 binds A/C-rich exon enhancers and stimulates splicing of the CD44 alternative exon v4.

Stickeler E, Fraser SD, Honig A, Chen AL, Berget SM, Cooper TA.

EMBO J. 2001 Jul 16;20(14):3821-30.

9.

Spliced segments at the 5' terminus of adenovirus 2 late mRNA. 1977.

Berget SM, Moore C, Sharp PA.

Rev Med Virol. 2000 Nov-Dec;10(6):356-62; discussion 355-6. No abstract available.

PMID:
11114075
10.
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12.

A 5' splice site-proximal enhancer binds SF1 and activates exon bridging of a microexon.

Carlo T, Sierra R, Berget SM.

Mol Cell Biol. 2000 Jun;20(11):3988-95.

13.

Stage-specific changes in SR splicing factors and alternative splicing in mammary tumorigenesis.

Stickeler E, Kittrell F, Medina D, Berget SM.

Oncogene. 1999 Jun 17;18(24):3574-82.

14.

Polypyrimidine tract-binding protein positively regulates inclusion of an alternative 3'-terminal exon.

Lou H, Helfman DM, Gagel RF, Berget SM.

Mol Cell Biol. 1999 Jan;19(1):78-85.

15.
16.

Regulation of alternative polyadenylation by U1 snRNPs and SRp20.

Lou H, Neugebauer KM, Gagel RF, Berget SM.

Mol Cell Biol. 1998 Sep;18(9):4977-85.

17.

A short sequence within two purine-rich enhancers determines 5' splice site specificity.

Elrick LL, Humphrey MB, Cooper TA, Berget SM.

Mol Cell Biol. 1998 Jan;18(1):343-52.

21.
22.

Architectural limits on split genes.

Sterner DA, Carlo T, Berget SM.

Proc Natl Acad Sci U S A. 1996 Dec 24;93(26):15081-5.

23.
24.

An intron enhancer recognized by splicing factors activates polyadenylation.

Lou H, Gagel RF, Berget SM.

Genes Dev. 1996 Jan 15;10(2):208-19.

25.
26.
27.

Exon recognition in vertebrate splicing.

Berget SM.

J Biol Chem. 1995 Feb 10;270(6):2411-4. Review. No abstract available.

28.

Intron definition in splicing of small Drosophila introns.

Talerico M, Berget SM.

Mol Cell Biol. 1994 May;14(5):3434-45.

29.

Nuclear-mitotic apparatus protein: a structural protein interface between the nucleoskeleton and RNA splicing.

Zeng C, He D, Berget SM, Brinkley BR.

Proc Natl Acad Sci U S A. 1994 Feb 15;91(4):1505-9.

30.

Efficient selection of 3'-terminal exons from vertebrate DNA.

Krizman DB, Berget SM.

Nucleic Acids Res. 1993 Nov 11;21(22):5198-202.

31.

In vivo recognition of a vertebrate mini-exon as an exon-intron-exon unit.

Sterner DA, Berget SM.

Mol Cell Biol. 1993 May;13(5):2677-87.

32.

Are vertebrate exons scanned during splice-site selection?

Niwa M, MacDonald CC, Berget SM.

Nature. 1992 Nov 19;360(6401):277-80.

PMID:
1359430
33.

Identification of exon sequences and an exon binding protein involved in alternative RNA splicing of calcitonin/CGRP.

Cote GJ, Stolow DT, Peleg S, Berget SM, Gagel RF.

Nucleic Acids Res. 1992 May 11;20(9):2361-6.

35.

Validation of an in vitro RNA processing system for CT/CGRP precursor mRNA.

Cote GJ, Nguyen IN, Lips CJ, Berget SM, Gagel RF.

Nucleic Acids Res. 1991 Jul 11;19(13):3601-6.

36.

Polyadenylation precedes splicing in vitro.

Niwa M, Berget SM.

Gene Expr. 1991 Apr;1(1):5-14.

37.

Identification of nuclear proteins that specifically bind to RNAs containing 5' splice sites.

Stolow DT, Berget SM.

Proc Natl Acad Sci U S A. 1991 Jan 15;88(2):320-4.

38.

Effect of 5' splice site mutations on splicing of the preceding intron.

Talerico M, Berget SM.

Mol Cell Biol. 1990 Dec;10(12):6299-305.

39.

Calcitonin exon sequences influence alternative RNA processing.

Cote GJ, Nguyen IN, Berget SM, Gagel RF.

Mol Endocrinol. 1990 Nov;4(11):1744-9.

PMID:
2280774
40.

UV cross-linking of polypeptides associated with 3'-terminal exons.

Stolow DT, Berget SM.

Mol Cell Biol. 1990 Nov;10(11):5937-44.

41.

In vitro polyadenylation is stimulated by the presence of an upstream intron.

Niwa M, Rose SD, Berget SM.

Genes Dev. 1990 Sep;4(9):1552-9.

42.

Exon definition may facilitate splice site selection in RNAs with multiple exons.

Robberson BL, Cote GJ, Berget SM.

Mol Cell Biol. 1990 Jan;10(1):84-94.

43.

Evidence that a nuclear matrix protein participates in premessenger RNA splicing.

Smith HC, Harris SG, Zillmann M, Berget SM.

Exp Cell Res. 1989 Jun;182(2):521-33.

PMID:
2721591
44.

Evidence for nuclear factors involved in recognition of 5' splice sites.

Zapp ML, Berget SM.

Nucleic Acids Res. 1989 Apr 11;17(7):2655-74.

45.
46.

U1 small nuclear ribonucleoproteins are required early during spliceosome assembly.

Zillmann M, Rose SD, Berget SM.

Mol Cell Biol. 1987 Aug;7(8):2877-83.

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