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Items: 1 to 20 of 91

2.

Solution structure and ligand recognition of the WW domain pair of the yeast splicing factor Prp40.

Wiesner S, Stier G, Sattler M, Macias MJ.

J Mol Biol. 2002 Dec 6;324(4):807-22.

PMID:
12460579
3.

A suppressor of a yeast splicing mutation (prp8-1) encodes a putative ATP-dependent RNA helicase.

Jamieson DJ, Rahe B, Pringle J, Beggs JD.

Nature. 1991 Feb 21;349(6311):715-7.

4.

Who's on first? The U1 snRNP-5' splice site interaction and splicing.

Rosbash M, Séraphin B.

Trends Biochem Sci. 1991 May;16(5):187-90. Review.

PMID:
1882420
7.

Mutations in yeast U5 snRNA alter the specificity of 5' splice-site cleavage.

Newman A, Norman C.

Cell. 1991 Apr 5;65(1):115-23.

PMID:
2013092
9.
11.

Mutations in U1 snRNA bypass the requirement for a cell type-specific RNA splicing factor.

Nandabalan K, Price L, Roeder GS.

Cell. 1993 Apr 23;73(2):407-15.

PMID:
8477451
12.

Extragenic suppressors of Saccharomyces cerevisiae prp4 mutations identify a negative regulator of PRP genes.

Maddock JR, Weidenhammer EM, Adams CC, Lunz RL, Woolford JL Jr.

Genetics. 1994 Mar;136(3):833-47.

13.
14.

3' splice site recognition in S. cerevisiae does not require base pairing with U1 snRNA.

Séraphin B, Kandels-Lewis S.

Cell. 1993 May 21;73(4):803-12.

PMID:
8500172
15.

The FF domains of yeast U1 snRNP protein Prp40 mediate interactions with Luc7 and Snu71.

Ester C, Uetz P.

BMC Biochem. 2008 Nov 11;9:29. doi: 10.1186/1471-2091-9-29.

17.
18.

Cotranscriptional spliceosome assembly and splicing are independent of the Prp40p WW domain.

Görnemann J, Barrandon C, Hujer K, Rutz B, Rigaut G, Kotovic KM, Faux C, Neugebauer KM, Séraphin B.

RNA. 2011 Dec;17(12):2119-29. doi: 10.1261/rna.02646811. Epub 2011 Oct 21.

19.
20.

Stem-loop 4 of U1 snRNA is essential for splicing and interacts with the U2 snRNP-specific SF3A1 protein during spliceosome assembly.

Sharma S, Wongpalee SP, Vashisht A, Wohlschlegel JA, Black DL.

Genes Dev. 2014 Nov 15;28(22):2518-31. doi: 10.1101/gad.248625.114.

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