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Researchers Find Potential Path to a Broadly Protective COVID-19 Vaccine

Using a method developed for HIV, researchers have identified stable T cell vaccine targets in SARS-CoV-2

Written byMassachusetts General Hospital
| 4 min read
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BOSTON, MA — Gaurav Gaiha, MD, PhD, a member of the Ragon Institute of Massachusetts General Hospital (MGH), MIT, and Harvard, studies HIV, one of the fastest-mutating viruses known to humankind. But HIV's ability to mutate isn't unique among RNA viruses—most viruses develop mutations, or changes in their genetic code, over time. If a virus is disease-causing, the right mutation can allow the virus to escape the immune response by changing the viral pieces the immune system uses to recognize the virus as a threat, pieces scientists call epitopes.

To combat HIV's high rate of mutation, Gaiha and Elizabeth Rossin, MD, PhD, a retina fellow at Massachusetts Eye and Ear, a member of Mass General Brigham, developed an approach known as structure-based network analysis. With this, they can identify viral pieces that are constrained, or restricted, from mutation. Changes in mutationally constrained epitopes are rare, as they can cause the virus to lose its ability to infect and replicate, essentially rendering it unable to propagate itself. 

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