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Updated: Mar 25, 2026

Lighting Up the Pathways to Caspase Activation Using Bimolecular Fluorescence Complementation
Published on: March 5, 2018
Interactome network analysis identifies multiple caspase-6 interactors involved in the pathogenesis of HD
Sean-Patrick Riechers1, Stefanie Butland2, Yu Deng2
1Max Delbrück Centrum für Molekulare Medizin Berlin-Buch, Berlin 13125, Germany.
Insights
Caspase-6 (CASP6) protease interacts with many proteins, including STK3, and is implicated in neurodegenerative diseases like Huntington
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- Caspase-6 (CASP6) is crucial in neurodegenerative diseases such as Huntington disease (HD), Alzheimer disease (AD), and cerebral ischemia.
- CASP6 activation occurs early in these disease processes and is involved in axonal degeneration.
- Understanding protein-protein interactions is key to elucidating CASP6 function.
Purpose of the Study:
- To identify proteins that interact with Caspase-6 (CASP6) using a high-throughput yeast-2-hybrid screen.
- To investigate the functional consequences of CASP6 interactions in neurodegenerative pathways.
- To explore potential therapeutic targets for HD, AD, and cerebral ischemia.
Main Methods:
- High-throughput yeast-2-hybrid (Y2H) screening of approximately 17,000 human proteins against CASP6.
- Bioinformatic prediction of CASP6 recognition sites.
- LUMIER assays for validation of interactions and biochemical assays to confirm substrate cleavage.
Main Results:
- Identified 87 high-confidence CASP6 interactors.
- Validated six out of nine candidate substrates as being cleaved by CASP6.
- Found that 54% of identified interactors show altered mRNA levels in human HD brains, with enrichment for huntingtin (HTT) interactors. STK3 was confirmed as a CASP6 substrate, with increased levels observed in mutant huntingtin (mHTT) expressing cells.
Conclusions:
- The study characterizes the interaction network of CASP6, revealing its role in key neurodegenerative pathways.
- Identified STK3 as a novel CASP6 substrate, with implications for mHTT-related cellular changes.
- The findings highlight potential novel therapeutic targets for HD, AD, and cerebral ischemia.
Abstract:
Caspase-6 (CASP6) has emerged as an important player in Huntington disease (HD), Alzheimer disease (AD) and cerebral ischemia, where it is activated early in the disease process. CASP6 also plays a key role in axonal degeneration, further underscoring the importance of this protease in neurodegenerative pathways. As a protein's function is modulated by its protein-protein interactions, we performed a high-throughput yeast-2-hybrid (Y2H) screen against ∼17,000 human proteins to gain further insight into the function of CASP6. We identified a high-confidence list of 87 potential CASP6 interactors. From this list, 61% are predicted to contain a CASP6 recognition site. Of nine candidate substrates assessed, six are cleaved by CASP6. Proteins that did not contain a predicted CASP6 recognition site were assessed using a LUMIER assay approach, and 51% were further validated as interactors by this method. Of note, 54% of the high-confidence interactors identified show alterations in human HD brain at the mRNA level, and there is a significant enrichment for previously validated huntingtin (HTT) interactors. One protein of interest, STK3, a pro-apoptotic kinase, was validated biochemically to be a CASP6 substrate. Furthermore, our results demonstrate that in striatal cells expressing mutant huntingtin (mHTT), an increase in full length and fragment levels of STK3 are observed. We further show that caspase-3 is not essential for the endogenous cleavage of STK3. Characterization of the interaction network provides important new information regarding key pathways of interactors of CASP6 and highlights potential novel therapeutic targets for HD, AD and cerebral ischemia.
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