K. Ehrenman

Sequence specificity of the P6 pairing for splicing of the group I td intron of phage T4.

Ehrenman, K, Schroeder, R, Chandry, P S, Hall, D H, Belfort, M

Seventeen non-directed td- (thymidylate synthase-deficient) splicing-defective mutations isolated in phage T4 were localized within the catalytic core of the ribozyme. All of the mutations occur in...

Purification, characterization, and cDNA cloning of an AU-rich element RNA-binding protein, AUF1.

Zhang, W, Wagner, B J, Ehrenman, K, Schaefer, A W, DeMaria, C T, Crater, D, ...

The degradation of some proto-oncogene and lymphokine mRNAs is controlled in part by an AU-rich element (ARE) in the 3' untranslated region. It was shown previously (G. Brewer, Mol. Cell. Biol....

Processing of phage T4 td-encoded RNA is analogous to the eukaryotic group I splicing pathway.

Ehrenman, K, Pedersen-Lane, J, West, D, Herman, R, Maley, F, Belfort, M

Several features of the split td gene of phage T4 suggest an RNA processing mechanism analogous to that of the self-splicing rRNA of Tetrahymena and other group I eukaryotic introns. Previous work...

Sequence specificity of the P6 pairing for splicing of the group I td intron of phage T4.

Ehrenman, K, Schroeder, R, Chandry, P S, Hall, D H, Belfort, M

Seventeen non-directed td- (thymidylate synthase-deficient) splicing-defective mutations isolated in phage T4 were localized within the catalytic core of the ribozyme. All of the mutations occur in...

Purification, characterization, and cDNA cloning of an AU-rich element RNA-binding protein, AUF1.

Zhang, W, Wagner, B J, Ehrenman, K, Schaefer, A W, DeMaria, C T, Crater, D, ...

The degradation of some proto-oncogene and lymphokine mRNAs is controlled in part by an AU-rich element (ARE) in the 3' untranslated region. It was shown previously (G. Brewer, Mol. Cell. Biol....

Processing of phage T4 td-encoded RNA is analogous to the eukaryotic group I splicing pathway.

Ehrenman, K, Pedersen-Lane, J, West, D, Herman, R, Maley, F, Belfort, M

Several features of the split td gene of phage T4 suggest an RNA processing mechanism analogous to that of the self-splicing rRNA of Tetrahymena and other group I eukaryotic introns. Previous work...