FUNCTION OF DISINTEGRIN-LIKE DOMAIN OF KSHV gB IN REGULATING VIRUS INFECTION

ECU Author/Contributor (non-ECU co-authors, if there are any, appear on document)
Lia R. Walker (Creator)
Institution
East Carolina University (ECU )
Web Site: http://www.ecu.edu/lib/

Abstract: KSHV, also referred to as human herpesvirus-8 (HHV-8), is the eighth and latest identified human herpesvirus. It is the causative agent for a variety of malignancies namely Kaposi’s sarcoma (KS), primary effusion lymphoma (PEL), and multicentric Castleman disease (MCD). The processes and mechanisms involved in virus entry are among the many intricacies not fully understood regarding KSHV and other viruses. As in other herpesviruses, KSHV target cell entry is a complex process consisting of multiple steps which include: initial attachment/binding to the cell, virus:cell surface receptor interactions, virus internalization/uptake, and subsequent trafficking of the virus for nuclear delivery. Viral envelope glycoproteins interact with target cell surface receptor molecules to facilitate entry into cells. For instance, virus envelope associated glycoprotein B (gB) of KSHV is known to interact with integrins via its RGD (Arg-Gly-Asp\; 27-29aa) integrin binding domain. RGD of KSHV functionally interacts with integrins a3ß1, aVß3, and aVß5 that have a role in initiating internalization. Cell surface receptors, like integrins, aid in a virus’ ability to establish a successful infection. In addition to RGD, KSHV gB also harbors the lesser studied integrin recognition motif, disintegrin-like domain (DLD\; 66-85aa). As it pertains to virus entry in general, few studies have sought to establish a role for DLD, which is highly conserved among gB homologs. In the following studies, we employed phage display peptide library screening and recombinant viruses to determine that DLD of KSHV gB binds a9ß1 integrin on the surface of target cells in an interaction critical for infection. We go on to specify a role for DLD-binding a9ß1 in mediating KSHV entry by employing subcellular fractionation. The virus interactions with a9ß1 are crucial for endosomal trafficking of KSHV, as integrin a9ß1was observed to have a role in late endosomal escape of KSHV for cytosolic delivery. These studies provide new insights in regards to KSHV infectious entry into target cells. Advancing our knowledge of virus entry is critical for a thorough understanding of KSHV pathogenesis.

Additional Information

Publication
Dissertation
Language: English
Date: 2023
Subjects
Disintegrin-like domain;Disintegrins;Integrins

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FUNCTION OF DISINTEGRIN-LIKE DOMAIN OF KSHV gB IN REGULATING VIRUS INFECTIONhttp://hdl.handle.net/10342/5123The described resource references, cites, or otherwise points to the related resource.