Biophysical and structural characterization of a multifunctional viral genome packaging motor

Author:

Prokhorov Nikolai S123ORCID,Davis Christal R4,Maruthi Kashyap12,Yang Qin5,Sherman Michael B12,Woodson Michael2,White Mark A12,Miller Lohra M6,Jarrold Martin F6,Catalano Carlos E45ORCID,Morais Marc C123ORCID

Affiliation:

1. Department of Biochemistry and Molecular Biology, The University of Texas Medical Branch at Galveston , Galveston , TX  77555 , USA

2. Sealy Center for Structural Biology, The University of Texas Medical Branch at Galveston , Galveston , TX  77555 , USA

3. Department of Molecular and Cellular Biochemistry, Indiana University , Bloomington , IN  47405 , USA

4. Program in Structural Biology and Biochemistry, University of Colorado Anschutz Medical Campus , Aurora , CO  80045 , USA

5. Department of Pharmaceutical Chemistry, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of Colorado Anschutz Campus , Aurora, CO  80045 , USA

6. Department of Chemistry, Indiana University , Bloomington , IN  47405 , USA

Abstract

Abstract The large dsDNA viruses replicate their DNA as concatemers consisting of multiple covalently linked genomes. Genome packaging is catalyzed by a terminase enzyme that excises individual genomes from concatemers and packages them into preassembled procapsids. These disparate tasks are catalyzed by terminase alternating between two distinct states—a stable nuclease that excises individual genomes and a dynamic motor that translocates DNA into the procapsid. It was proposed that bacteriophage λ terminase assembles as an anti-parallel dimer-of-dimers nuclease complex at the packaging initiation site. In contrast, all characterized packaging motors are composed of five terminase subunits bound to the procapsid in a parallel orientation. Here, we describe biophysical and structural characterization of the λ holoenzyme complex assembled in solution. Analytical ultracentrifugation, small angle X-ray scattering, and native mass spectrometry indicate that 5 subunits assemble a cone-shaped terminase complex. Classification of cryoEM images reveals starfish-like rings with skewed pentameric symmetry and one special subunit. We propose a model wherein nuclease domains of two subunits alternate between a dimeric head-to-head arrangement for genome maturation and a fully parallel arrangement during genome packaging. Given that genome packaging is strongly conserved in both prokaryotic and eukaryotic viruses, the results have broad biological implications.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics

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