Residue proximity information and protein model discrimination using saturation-suppressor mutagenesis

Author:

Sahoo Anusmita1,Khare Shruti1,Devanarayanan Sivasankar1,Jain Pankaj C.1,Varadarajan Raghavan12

Affiliation:

1. Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India

2. Jawaharlal Nehru Center for Advanced Scientific Research, Bangalore, India

Abstract

Identification of residue-residue contacts from primary sequence can be used to guide protein structure prediction. Using Escherichia coli CcdB as the test case, we describe an experimental method termed saturation-suppressor mutagenesis to acquire residue contact information. In this methodology, for each of five inactive CcdB mutants, exhaustive screens for suppressors were performed. Proximal suppressors were accurately discriminated from distal suppressors based on their phenotypes when present as single mutants. Experimentally identified putative proximal pairs formed spatial constraints to recover >98% of native-like models of CcdB from a decoy dataset. Suppressor methodology was also applied to the integral membrane protein, diacylglycerol kinase A where the structures determined by X-ray crystallography and NMR were significantly different. Suppressor as well as sequence co-variation data clearly point to the X-ray structure being the functional one adopted in vivo. The methodology is applicable to any macromolecular system for which a convenient phenotypic assay exists.

Funder

Department of Biotechnology , Ministry of Science and Technology

Department of Science and Technology, Ministry of Science and Technology

Council of Scientific and Industrial Research

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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