Biodistribution of Radioiodinated Adenovirus Fiber Protein Knob Domain after Intravenous Injection in Mice
Open Access
- 15 June 2004
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 78 (12) , 6431-6438
- https://doi.org/10.1128/jvi.78.12.6431-6438.2004
Abstract
The knob domains from the fiber proteins of adenovirus serotypes 2 and 12 were labeled with radioiodine and then injected into the bloodstreams of mice. Knob proteins with functional binding sites for the coxsackie and adenovirus receptor (CAR) were cleared rapidly from the circulation, with radioactivity appearing predominantly in the stomach, while knob mutants unable to bind to CAR remained in the blood circulation for a prolonged period. The clearance of radiolabeled wild-type knob from the blood was slowed by coinjecting an excess of unlabeled wild-type knob protein. An earlier study showed that 99mTc-labeled knob protein with intact CAR-binding activity also cleared rapidly from the blood circulation of mice, with radioactivity accumulating predominantly in the liver (K. R. Zinn et al., Gene Ther. 5:798-808, 1998). Together these results suggest that rapid clearance of knob protein from the blood results from specific binding to CAR in the liver and that the bound knob then enters a degradative pathway. The elevated levels of radioiodine in the stomach observed in our experiments are consistent with deiodination of labeled knob by dehalogenases in hepatocyte microsomes and uptake of the resultant free radioiodine by Na/I symporters in the gastric mucosa. Although CAR has been shown to localize in tight junctions of polarized epithelial cells, where it functions in intercellular adhesion, the results of our study suggest that a subset of CAR molecules in the liver is highly accessible to ligands in the blood and able to rapidly deliver bound ligand to an intracellular degradative compartment.Keywords
This publication has 68 references indexed in Scilit:
- The Coxsackie B Virus and Adenovirus Receptor Resides in a Distinct Membrane MicrodomainJournal of Virology, 2003
- Adenovirus Fiber Disrupts CAR-Mediated Intercellular Adhesion Allowing Virus EscapeCell, 2002
- Adenovirus Type 9 Fiber Knob Binds to the Coxsackie B Virus-Adenovirus Receptor (CAR) with Lower Affinity than Fiber Knobs of Other CAR-Binding Adenovirus SerotypesJournal of Virology, 2001
- Kinetic Analysis of Adenovirus Fiber Binding to Its Receptor Reveals an Avidity Mechanism for Trimeric Receptor-Ligand InteractionsJournal of Biological Chemistry, 2001
- Expression of the Adenovirus Receptor and Its Interaction with the Fiber KnobExperimental Cell Research, 2000
- Imaging and tissue biodistribution of 99mTc-labeled adenovirus knob (serotype 5)Gene Therapy, 1998
- SWISS‐MODEL and the Swiss‐Pdb Viewer: An environment for comparative protein modelingElectrophoresis, 1997
- Radiolabeling with technetium-99m to study high-capacity and low-capacity biochemical systemsEuropean Journal of Nuclear Medicine and Molecular Imaging, 1995
- Integrins αvβ3 and αvβ5 promote adenovirus internalization but not virus attachmentCell, 1993
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970