4.5 Article

Pharmacological treatment and BBB-targeted genetic therapy for MCT8-dependent hypomyelination in zebrafish

Journal

DISEASE MODELS & MECHANISMS
Volume 9, Issue 11, Pages 1339-1348

Publisher

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/dmm.027227

Keywords

Psychomotor-retardation; Live imaging; Zebrafish Myelin; Thyroid; Mct8; Blood-brain barrier; Allan-Herndon-Dudley syndrome (AHDS)

Funding

  1. European Commission ERA-NET scheme for Research Programmes on Rare Diseases (E-RARE) [3-10861]
  2. Sherman Foundation
  3. University of Technology Sydney [590262]
  4. German-Israeli Foundation for Scientific Research and Development (GIF) [I-1314-418.13/2015]
  5. Fondation Jerome Lejeune [1349]

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Hypomyelination is a key symptomof Allan-Herndon-Dudley syndrome (AHDS), a psychomotor retardation associated with mutations in the thyroid-hormone (TH) transporter MCT8 (monocarboxylate transporter 8). AHDS is characterized by severe intellectual deficiency, neuromuscular impairment and brain hypothyroidism. In order to understand the mechanism for TH-dependent hypomyelination, we developed an mct8 mutant (mct8(-/-)) zebrafish model. The quantification of genetic markers for oligodendrocyte progenitor cells (OPCs) and mature oligodendrocytes revealed reduced differentiation of OPCs into oligodendrocytes in mct8(-/-)larvae and adults. Live imaging of single glial cells showed that the number of oligodendrocytes and the length of their extensions are reduced, and the number of peripheral Schwann cells is increased, in mct8(-/-)larvae compared with wild type. Pharmacological analysis showed that TH analogs and clemastine partially rescued the hypomyelination in the CNS of mct8(-/-)larvae. Intriguingly, triiodothyronine (T3) treatment rescued hypomyelination in mct8(-/-)embryos before the maturation of the blood-brain barrier (BBB), but did not affect hypomyelination in older larvae. Thus, we expressed Mct8-tagRFP in the endothelial cells of the vascular system and showed that even relatively weak mosaic expression completely rescued hypomyelination in mct8(-/-)larvae. These results suggest potential pharmacological treatments and BBB-targeted gene therapy that can enhance myelination in AHDS and possibly in other TH-dependent brain disorders.

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