THAP1 modulates oligodendrocyte maturation by regulating ECM degradation in lysosomes.

Yellajoshyula, Dhananjay; Pappas, Samuel S; Rogers, Abigail E; Choudhury, Biswa; Reed, Xylena; Ding, Jinhui; Cookson, Mark R; Shakkottai, Vikram G et al. · Proc Natl Acad Sci U S A · 2021

basic_science · Level V

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Abstract

Mechanisms controlling myelination during central nervous system (CNS) maturation play a pivotal role in the development and refinement of CNS circuits. The transcription factor THAP1 is essential for timing the inception of myelination during CNS maturation through a cell-autonomous role in the oligodendrocyte lineage. Here, we demonstrate that THAP1 modulates the extracellular matrix (ECM) composition by regulating glycosaminoglycan (GAG) catabolism within oligodendrocyte progenitor cells (OPCs). <i>Thap1</i><sup>-/-</sup> OPCs accumulate and secrete excess GAGs, inhibiting their maturation through an autoinhibitory mechanism. THAP1 controls GAG metabolism by binding to and regulating the <i>GusB</i> gene encoding β-glucuronidase, a GAG-catabolic lysosomal enzyme. Applying GAG-degrading enzymes or overexpressing β-glucuronidase rescues <i>Thap1</i><sup>-/-</sup> OL maturation deficits in vitro and in vivo. Our studies establish lysosomal GAG catabolism within OPCs as a critical mechanism regulating oligodendrocyte development.

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