Translational reading frame predicts the pathogenicity of C-terminal frameshift deletions in MeCP2.

Guy, Jacky; Hein, Elena; Alexander-Howden, Beatrice; von Bock Und Polach, Timur; Mathieson, Tricia; Kleinstiver, Benjamin P; Zoghbi, Huda Y; Bird, Adrian · Elife · 2026

basic_science · Level V

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Abstract

Mutations in the <i>MECP2</i> gene cause the severe neurological disorder Rett syndrome. A cluster of frameshift-causing C-terminal deletions (CTDs) removes ~100 amino acids and accounts for approximately 10% of RTT-causing mutations. Their pathogenicity is unexpected because this C-terminal domain is dispensable in mice. Analysis of pathogenic and benign human <i>MECP2</i> variants reveals that some individuals with apparently typical CTDs do not develop Rett syndrome, confirming that C-terminal truncations are not intrinsically pathogenic. Using human sequence data and mouse models we show that pathogenicity results from a marked reduction in MeCP2 levels and depends on the presence of a proline proline stop motif (-PPX) generated by a shift to the +2 reading frame. CTDs that shift to the +1 frame avoid this motif and are benign. Replacing the stop codon of the PPX motif with tryptophan restores MeCP2 expression and rescues RTT-like phenotypes in a CTD mouse model. An adenine base editor efficiently introduces this substitution in cultured cells. These findings define a reliable prognostic distinction between benign and pathogenic CTDs and establish a potential editing strategy for correcting disease-causing CTD mutations.

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