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Published on: January 7, 2019
Applications of CRISPR-Cas-Based Genome Editing Approaches Against Human Cytomegalovirus Infection
Andra Zhang1,2, Isadora Zhang1,3, Fenyong Liu1,3
1School of Public Health, University of California, Berkeley, CA 94720, USA.
Abstract:
Human cytomegalovirus (HCMV), a globally ubiquitous herpesvirus with the ability to carry out both lytic productive and lifelong latent infections, is a major cause of congenital infections, often leading to intellectual disabilities and neurological disorders. Moreover, HCMV is an opportunistic pathogen commonly found in immunocompromised individuals such as organ transplant recipients, HIV-positive individuals, and cancer patients, causing severe and life-threatening complications. While effective in inhibiting viral lytic infection, current FDA-approved compounds cannot eliminate the latent viral genome and have little effect on viral latent infection. Developing novel antiviral therapeutic approaches to eliminate HCMV lytic and latent infections is a major public health priority for controlling HCMV infection and preventing viral-associated diseases. The genome-editing technology based on the Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)/CRISPR-associated protein (Cas) RNA-guided nuclease system represents a novel and promising antiviral approach through modifying or destroying the genetic material of human viruses. This review summarizes the recently published progress in using the CRISPR-Cas approach to study and inhibit HCMV infections and discusses prospects for developing the CRISPR-based genome-editing technology for therapeutic applications against HCMV infection and associated diseases.
Insights
Novel CRISPR-Cas genome editing shows promise for eliminating both lytic and latent Human cytomegalovirus (HCMV) infections, offering new therapeutic strategies for this widespread pathogen.
Area of Science:
- Virology
- Molecular Biology
- Gene Therapy
Background:
- Human cytomegalovirus (HCMV) establishes lifelong latent infections and causes severe complications in immunocompromised individuals and congenital infections.
- Current therapies can inhibit lytic HCMV but fail to eradicate the latent viral genome, highlighting a critical unmet medical need.
Purpose of the Study:
- To review recent advancements in applying CRISPR-Cas genome editing technology to study and inhibit HCMV.
- To discuss the therapeutic potential of CRISPR-based approaches for controlling HCMV infection and associated diseases.
Main Methods:
- Review of current literature on CRISPR-Cas applications against HCMV.
- Analysis of the mechanisms by which CRISPR-Cas targets viral genetic material.
Main Results:
- CRISPR-Cas systems demonstrate potential for modifying or destroying HCMV genetic material.
- This technology offers a novel strategy to combat both active and latent HCMV infections.
Conclusions:
- CRISPR-Cas genome editing represents a promising antiviral approach for HCMV.
- Further development of CRISPR-based therapies could lead to effective treatments for HCMV infection and related pathologies.
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