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HDAC6 inhibition alleviates mitochondrial trafficking in models of Charcot-Marie-Tooth disease type 2A
Lydia H. Jestice, Larissa Butler, Rebecca A. Lea, Kathryn I. Adamson, Jonas Van Lent, Stuart L. Johnson, Hollie Weedon, Eldriena D’Silva, Gabriele Gelezauskaite, Bob Asselbergh, Eloise Brown, Owen Laing, Christopher J. Price, Dylan Stavish, Anestis Tsakiridis, Mark O. Collins, Vincent Timmerman, Kurt J. De Vos, Alison E. Twelvetrees, Andrew J. Grierson, Ivana Barbaric
Lydia H. Jestice, Larissa Butler, Rebecca A. Lea, Kathryn I. Adamson, Jonas Van Lent, Stuart L. Johnson, Hollie Weedon, Eldriena D’Silva, Gabriele Gelezauskaite, Bob Asselbergh, Eloise Brown, Owen Laing, Christopher J. Price, Dylan Stavish, Anestis Tsakiridis, Mark O. Collins, Vincent Timmerman, Kurt J. De Vos, Alison E. Twelvetrees, Andrew J. Grierson, Ivana Barbaric
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Research Article Cell biology Neuroscience

HDAC6 inhibition alleviates mitochondrial trafficking in models of Charcot-Marie-Tooth disease type 2A

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Abstract

Charcot-Marie-Tooth disease (CMT) is a group of inherited progressive conditions affecting distal motor and sensory neurons, leading to muscle weakness, pain, and loss of sensation in limbs. CMT type 2A (CMT2A) is the most common form of axonal CMT and is associated with a more severe clinical manifestation. However, there are no treatments currently available. To investigate disease mechanisms and facilitate treatment discovery, we developed an in vitro model for CMT2A by introducing the patient-specific MFN2R94Q/+ variant into human embryonic stem cells (hESCs). Isogenic variant and wild-type hESCs differentiated into spinal motor neurons with similar efficiency and gave rise to functional motor neurons in vitro. However, MFN2R94Q/+ spinal motor neurons displayed impaired mitochondrial trafficking, resulting in altered distribution of mitochondria in axons. Unbiased quantitative proteomic profiling of the endogenous MFN2 interactome revealed dose-dependent remodelling by the R94Q variant across 412 proteins, highlighting candidate mechanisms in disease pathology. Importantly, we showed that mitochondrial trafficking defects could be alleviated by treatment with an HDAC6 inhibitor. Chemical inhibition of HDAC6 also rescued the motor phenotype in a zebrafish CMT2A model. Taken together, our study reveals a variant-specific insight into CMT2A disease mechanisms and confirms HDAC6 as a promising target for further therapeutic development.

Authors

Lydia H. Jestice, Larissa Butler, Rebecca A. Lea, Kathryn I. Adamson, Jonas Van Lent, Stuart L. Johnson, Hollie Weedon, Eldriena D’Silva, Gabriele Gelezauskaite, Bob Asselbergh, Eloise Brown, Owen Laing, Christopher J. Price, Dylan Stavish, Anestis Tsakiridis, Mark O. Collins, Vincent Timmerman, Kurt J. De Vos, Alison E. Twelvetrees, Andrew J. Grierson, Ivana Barbaric

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Figure 6

HDAC6 inhibition by ACY-738 partially rescues mitochondrial trafficking defect in axons of MFN2R94Q/+ motor neurons and motor deficits in MFN2 variant zebrafish.

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HDAC6 inhibition by ACY-738 partially rescues mitochondrial trafficking ...
(A) Western blot analysis of acetylated α-tubulin in day 35 hESC–derived motor neurons treated for 24 hours with either DMSO or 100 nM ACY-738. (B) Representative axon and corresponding kymographs of day 36 wild-type and variant neurons after 24 hours of 100 nM ACY-738 treatment. Horizontal scale bars: 10 μm. Vertical scale bars: 100 seconds. (C) The percentage of motile mitochondria in DMSO- or ACY-738–treated control and variant lines. (D) Percentage of anterograde mitochondria and (E) retrograde mitochondria in DMSO- or ACY-738–treated wild-type or variant lines. (F) Average length and area (G) of mitochondria in wild-type and variant MFN2R94Q/+ hESC–derived motor neurons treated with DMSO or 100 nM ACY-738. Data shown as mean ± SEM with points representing average values from individual neurons in C–G. Statistical significance was calculated with a Mann-Whitney U test (C to E); n = 6 wild-type, 12 variant from 3 independent differentiations. **P < 0.01, ***P < 0.001. NS, not significant. (H) The change in critical swimming velocity (Ucrit) of mfn2hu3528/hu3528 zebrafish between 5 and 7 months after fertilization following intermittent treatment by combined oral and immersion dosing with vehicle (1% DMSO) or ACY-738. Points and error bars represent mean and standard deviations of Ucrit of individual fish measured at each time point (n = 8 vehicle-treated, n = 11 ACY-738–treated fish at 5 and 6 months after fertilization; n = 7 vehicle-treated, n = 11 ACY-738–treated fish at 7 months after fertilization). NS, not significant. **P < 0.01; ***P < 0.001 by 2-way ANOVA with Dunnett’s T3 multiple-comparison test between treatment groups at each time point.

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