Javascript must be enabled to continue!
HAP40 is a conserved central regulator of Huntingtin and a specific modulator of mutant Huntingtin toxicity
View through CrossRef
Abstract
Perturbation of Huntingtin (HTT)’s physiological function is one postulated pathogenic factor in Huntington’s disease (HD). However, little is known how HTT is regulated
in vivo
. In a proteomic study, we isolated a novel ∼40kDa protein as a strong binding partner of
Drosophila
HTT and demonstrated it was the functional ortholog of HAP40, an HTT associated protein shown recently to modulate HTT’s conformation but with unclear physiological and pathologic roles. We showed that in both flies and human cells, HAP40 maintained conserved physical and functional interactions with HTT, loss of HAP40 resulted in similar phenotypes as HTT knockout, including animal viability and autophagy, and more strikingly, HAP40 depletion significantly reduced the levels of endogenous HTT, while HAP40 was mostly degraded via the proteasome in the absence of HTT. Interestingly, polyglutamine expansion in HTT did not affect its affinity for HAP40. However, HAP40 modulated HD pathogenesis in
Drosophila
model by regulating the overall protein levels and the toxicity of full-length mutant HTT. Together, our study uncovers a conserved mechanism governing the stability and
in vivo
functions of HTT, and demonstrates that HAP40 is a central and positive regulator of HTT, a potential modulator of HD pathogenesis and a promising candidate for “HTT-lowering” strategy against HD.
Title: HAP40 is a conserved central regulator of Huntingtin and a specific modulator of mutant Huntingtin toxicity
Description:
Abstract
Perturbation of Huntingtin (HTT)’s physiological function is one postulated pathogenic factor in Huntington’s disease (HD).
However, little is known how HTT is regulated
in vivo
.
In a proteomic study, we isolated a novel ∼40kDa protein as a strong binding partner of
Drosophila
HTT and demonstrated it was the functional ortholog of HAP40, an HTT associated protein shown recently to modulate HTT’s conformation but with unclear physiological and pathologic roles.
We showed that in both flies and human cells, HAP40 maintained conserved physical and functional interactions with HTT, loss of HAP40 resulted in similar phenotypes as HTT knockout, including animal viability and autophagy, and more strikingly, HAP40 depletion significantly reduced the levels of endogenous HTT, while HAP40 was mostly degraded via the proteasome in the absence of HTT.
Interestingly, polyglutamine expansion in HTT did not affect its affinity for HAP40.
However, HAP40 modulated HD pathogenesis in
Drosophila
model by regulating the overall protein levels and the toxicity of full-length mutant HTT.
Together, our study uncovers a conserved mechanism governing the stability and
in vivo
functions of HTT, and demonstrates that HAP40 is a central and positive regulator of HTT, a potential modulator of HD pathogenesis and a promising candidate for “HTT-lowering” strategy against HD.
Related Results
Wild‐type huntingtin protects neurons from excitotoxicity
Wild‐type huntingtin protects neurons from excitotoxicity
AbstractHuntingtin is a caspase substrate, and loss of normal huntingtin function resulting from caspase‐mediated proteolysis may play a role in the pathogenesis of Huntington dise...
Huntingtin is a cell-autonomous regulator of neuropeptide trafficking and clock output
Huntingtin is a cell-autonomous regulator of neuropeptide trafficking and clock output
ABSTRACT
Huntington’s disease is a severe neurodegenerative condition arising from an abnormal CAG repeat expansion in the
HTT
...
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract 422: Novel approach to destabilization of oncogenic mutant p53 and therapeutic implications
Abstract
Introduction: Mutant p53 drives several hallmarks of cancer through a gain-of-function oncogenic program. The oncogenicity of mutant p53 includes sustained ...
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract
Cancer cases are on the rise globally requiring a deeper understanding of the disease and identification of novel therapeutic targets. Mutations in genes of...
Tinjauan Literatur Sistematis; Pemanfaatan Teknologi CRISPR-CAS9 Untuk Pengobatan Penyakit Huntington’s
Tinjauan Literatur Sistematis; Pemanfaatan Teknologi CRISPR-CAS9 Untuk Pengobatan Penyakit Huntington’s
A Systematic Literature Review: Utilization of CRISPR-CAS9 Technology for Treating Huntington's Disease
Huntington's Disease (HD) is a neurodegenerative disorder caused by a CAG tr...
Neuroprotective effects of hepatoma-derived growth factor in models of Huntington’s disease
Neuroprotective effects of hepatoma-derived growth factor in models of Huntington’s disease
Abstract
Huntington’s disease (HD) is a movement disorder caused by a mutation in the Huntingtin gene, that leads to severe neurodegeneration and inevitable death o...
Glycogen synthase protects neurons from cytotoxicity of mutant huntingtin by enhancing the autophagy flux
Glycogen synthase protects neurons from cytotoxicity of mutant huntingtin by enhancing the autophagy flux
AbstractHealthy neurons do not store glycogen while they do possess the machinery for the glycogen synthesis albeit at an inactive state. Neurons in the degenerating brain, however...
Abstract 3101: The mutant IDH1 inhibitor prevents growth of glioblastoma with IDH1 mutation in patient-derived xenograft (PDX) model
Abstract 3101: The mutant IDH1 inhibitor prevents growth of glioblastoma with IDH1 mutation in patient-derived xenograft (PDX) model
Abstract
Mutations in isocitrate dehydrogenase (IDH) 1 and 2 are frequently observed in acute myeloid leukemia (AML), glioma, and many other cancers. While wild-type...

