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Published on: October 27, 2019
Atomic force microscopy investigation of the giant mimivirus
Yuri G Kuznetsov1, Chuan Xiao, Siyang Sun
1Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697-3900, USA.
Abstract:
Mimivirus was investigated by atomic force microscopy in its native state following serial degradation by lysozyme and bromelain. The 750-nm diameter virus is coated with a forest of glycosylated protein fibers of lengths about 140 nm with diameters 1.4 nm. Fibers are capped with distinctive ellipsoidal protein heads of estimated Mr=25 kDa. The surface fibers are attached to the particle through a layer of protein covering the capsid, which is in turn composed of the major capsid protein (MCP). The latter is organized as an open network of hexagonal rings with central depressions separated by 14 nm. The virion exhibits an elaborate apparatus at a unique vertex, visible as a star shaped depression on native particles, but on defibered virions as five arms of 50 nm width and 250 nm length rising above the capsid by 20 nm. The apparatus is integrated into the capsid and not applied atop the icosahedral lattice. Prior to DNA release, the arms of the star disengage from the virion and it opens by folding back five adjacent triangular faces. A membrane sac containing the DNA emerges from the capsid in preparation for fusion with a membrane of the host cell. Also observed from disrupted virions were masses of distinctive fibers of diameter about 1 nm, and having a 7-nm periodicity. These are probably contained within the capsid along with the DNA bearing sac. The fibers were occasionally observed associated with toroidal protein clusters interpreted as processive enzymes modifying the fibers.
Insights
Atomic force microscopy revealed mimivirus
Area of Science:
- Virology
- Structural Biology
- Biophysics
Background:
- Mimivirus, a giant virus, possesses a complex structure.
- Understanding its structural organization is key to deciphering its replication cycle.
Purpose of the Study:
- To investigate the native structure of mimivirus using atomic force microscopy.
- To elucidate the structural components and their arrangement, including surface fibers and the unique vertex apparatus.
Main Methods:
- Atomic force microscopy (AFM) was employed to image mimivirus.
- Serial degradation using lysozyme and bromelain was performed to reveal underlying structures.
Main Results:
- Mimivirus (750 nm) is covered by 140 nm glycosylated protein fibers with 25 kDa protein heads.
- A unique vertex apparatus, appearing as a star-shaped depression, consists of five arms that disengage for DNA release.
- Internal fibers (1 nm diameter) and toroidal protein clusters were observed within the capsid.
Conclusions:
- The study provides a detailed structural map of mimivirus in its native and degraded states.
- The findings reveal the intricate mechanism of DNA release involving the vertex apparatus and capsid opening.
- The structural insights contribute to understanding the biology of giant viruses.
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