Related Experiment Video
Updated: Feb 12, 2026

Author Spotlight: Refining Xenopus laevis Marking Techniques for Biomedical Studies
Published on: June 28, 2024
A tail-like assembly at the portal vertex in intact herpes simplex type-1 virions
Michael F Schmid1, Corey W Hecksel, Ryan H Rochat
1National Center for Macromolecular Imaging, Verna and Marrs Mclean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas, United States of America.
Abstract:
Herpes viruses are prevalent and well characterized human pathogens. Despite extensive study, much remains to be learned about the structure of the genome packaging and release machinery in the capsids of these large and complex double-stranded DNA viruses. However, such machinery is well characterized in tailed bacteriophage, which share a common evolutionary origin with herpesvirus. In tailed bacteriophage, the genome exits from the virus particle through a portal and is transferred into the host cell by a complex apparatus (i.e. the tail) located at the portal vertex. Here we use electron cryo-tomography of human herpes simplex type-1 (HSV-1) virions to reveal a previously unsuspected feature at the portal vertex, which extends across the HSV-1 tegument layer to form a connection between the capsid and the viral membrane. The location of this assembly suggests that it plays a role in genome release into the nucleus and is also important for virion architecture.
More Related Videos
Related Concept Videos
04:18Methods for Tattooing Xenopus laevis with a Rotary Tattoo Machine
08:07A Two-Step Pyrolysis-Gas Chromatography Method with Mass Spectrometric Detection for Identification of Tattoo Ink Ingredients and Counterfeit Products
07:42Inkjet Printing All Inorganic Halide Perovskite Inks for Photovoltaic Applications
09:58Environmental Screening of Aeromonas hydrophila, Mycobacterium spp., and Pseudocapillaria tomentosa in Zebrafish Systems
06:37Skin Tattooing As A Novel Approach For DNA Vaccine Delivery
10:49Planar and Three-Dimensional Printing of Conductive Inks

