Abstract
The lysozyme of bacteriophage T7 is a bifunctional protein that cuts amide bonds in the bacterial cell wall and binds to and inhibits transcription by T7 RNA polymerase. The structure of a mutant T7 lysozyme has been determined by x-ray crystallography and refined at 2.2-A resolution. The protein folds into an alpha/beta-sheet structure that has a prominent cleft. A zinc atom is located in the cleft, bound directly to three amino acids and, through a water molecule, to a fourth. Zinc is required for amidase activity but not for inhibition of T7 RNA polymerase. Alignment of the zinc ligands of T7 lysozyme with those of carboxypeptidase A and thermolysin suggests structural similarity among the catalytic sites for the amidase and these zinc proteases. Mutational analysis identified presumed catalytic residues for amidase activity within the cleft and a surface that appears to be the site of binding to T7 RNA polymerase. Binding of T7 RNA polymerase inhibits amidase activity.
MeSH Terms
Amidohydrolases/metabolism,ultrastructure
Amino Acid Sequence
Bacteriophage T7/enzymology
Binding Sites
Crystallography, X-Ray
DNA-Directed RNA Polymerases/antagonists & inhibitors
Metalloproteins/ultrastructure
Molecular Sequence Data
Muramidase/chemistry,metabolism,ultrastructure
Protein Structure, Tertiary
Structure-Activity Relationship
Viral Proteins
Zinc
Chemicals
Metalloproteins
Viral Proteins
bacteriophage T7 RNA polymerase
DNA-Directed RNA Polymerases
Muramidase
Amidohydrolases
Zinc
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Cheng X
W. M. Keck Structural Biology Laboratory, Cold Spring Harbor Laboratory, NY 11724.
Zhang X
Pflugrath J W
Studier F W
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