Literature for peptidase S24.002: phage lambda repressor protein
(Topics flags: S Structure. To select only the references relevant to a single topic, click the link above. See explanation.)
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Hanazono,Y., Takeda,K. and Miki,K.
Co-translational folding of alpha-helical proteins: structural studies of intermediate-length variants of the lambda repressor
FEBS Open Bio8, 1312-1321. PubMed Europe PubMed DOI -
Stayrook,S., Jaru-Ampornpan,P., Ni,J., Hochschild,A. and Lewis,M.
Crystal structure of the lambda repressor and a model for pairwise cooperative operator binding
Nature452, 1022-1025. PubMed Europe PubMed DOI S -
Ndjonka,D. and Bell,C.E.
Structure of a hyper-cleavable monomeric fragment of phage lambda repressor containing the cleavage site region
J Mol Biol362, 479-489. PubMed Europe PubMed DOI -
[YEAR:23-6-2000]Bell,C.E., Frescura,P., Hochschild,A. and Lewis,M.
Crystal structure of the lambda repressor C-terminal domain provides a model for cooperative operator binding
Cell101, 801-811. PubMed Europe PubMed S -
[YEAR:18-6-1993]Kim,B. and Little,J.W.
LexA and lambda Cl repressors as enzymes: specific cleavage in an intermolecular reaction
Cell73, 1165-1173. PubMed Europe PubMed DOI -
[YEAR:4-11-1986]Slilaty,S.N., Rupley,J.A. and Little,J.W.
Intramolecular cleavage of LexA and phage lambda repressors: dependence of kinetics on repressor concentration, pH, temperature, and solvent
Biochemistry25, 6866-6875. PubMed Europe PubMed -
Little,J.W.
Autodigestion of lexA and phage lambda repressors
Proc Natl Acad Sci U S A81, 1375-1379. PubMed Europe PubMed -
Roberts,J.W. and Roberts,C.W.
Proteolytic cleavage of bacteriophage lambda repressor in induction
Proc Natl Acad Sci U S A72, 147-151. PubMed Europe PubMed
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