Abstract
Huntington's disease (HD) happens because of a genetic change that adds too many repeats of a sequence called CAG in the huntingtin (HTT) gene. This creates a longer-than-normal stretch of glutamine amino acids (known as polyQ) at the start of the HTT protein, making the protein unstable and prone to clumping, which can harm brain cells. To track huntingtin in the lab and to see how it changes with disease or treatment, detection tools are needed, including antibodies. Many existing antibodies recognize the beginning part of the huntingtin protein, but since the polyQ can vary from person to person, those tools don’t always give consistent results. On the other end of the protein, far fewer good-quality antibodies exist. In this new study, we developed new antibodies that recognize the other end of HTT. We tested these in cells and found one antibody, called 2F8, that was most reliable. 2F8 worked across several common lab tests including western blotting, immunofluorescence, and ELISA. It detected HTT consistently no matter how long the polyQ stretch was, or whether the protein was bound to one of its key partners, HAP40. These new antibodies give the HD research community better tools to study both the normal job of huntingtin and the role it plays in HD, helping the field move toward more reliable research and, eventually, better treatments.
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CITATION STYLE
Park, Y.-N., Fanti, R., Sadeghi, S., Chandrasekaran, R., Edwards, A. M., Harding, R. J., & Houston, D. W. (2026). Novel monoclonal antibodies against the C-terminal HEAT domain of huntingtin. Journal of Huntington’s Disease. https://doi.org/10.1177/18796397261426634
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