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May 4, 20260 citations

The ATXN2 9 bp duplication in SCA3: clarifying evidence and correcting misinterpretations.

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JLJosé Miguel Laffita‐MesaMPMartin PaucarPSPer Svenningsson

Key Points

  • To clarify previous interpretations of ATXN2 9-bp duplication effects in SCA3 and its relevance in combination with CAG repeats.
  • Investigation of ATXN2 variants, including 9-bp duplication and CAG repeats in SCA3
  • Analysis of protein levels and translation initiation mechanisms
  • Correction of previous segregation analyses and interpretation of low-frequency variants.
  • No significant protective effect of the 9-bp duplication on age at onset was demonstrated
  • Evidence supports the role of ATXN2 duplication in a broader network of genetic modifiers in SCA3
  • Finally, variations classified as low frequency can still have significant biological implications.

Abstract

Lauerer et al. (Acta Neuropathol Commun 13:157, 2025) recently investigated the role of ATXN2 variants, including intermediate CAG repeats and a 9-bp duplication, in spinocerebellar ataxia type 3 (SCA3). While their study contributes valuable data, several of their interpretations diverge from our previous findings and require clarification. Our original hypothesis was not that the duplication alone modified age at onset, but that its effect emerges in combination with an intermediate-length ATXN2 allele (29 CAGs). Their claim of a protective effect is unsupported by non-significant results, which cannot establish equivalence. Furthermore, evidence from multiple studies demonstrates that both ATG1 and ATG2 can initiate translation, with redundancy explaining the in vivo ~ 140-145 kDa ATXN2 protein, thereby countering the assertion that the duplication is relevant only at the DNA level. We also correct the misattribution of our segregation analyses and emphasize that low frequency does not negate biological significance, as rare variants can act as genetic modifiers. Taken together, convergent DNA, RNA, and protein evidence supports the relevance of the ATXN2 9-bp duplication as part of the broader network of modifiers in SCA3.

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Cite This Study

Laffita‐Mesa et al. (2026) studied this question.

synapsesocial.com/papers/69f837003ed186a73998112ehttps://doi.org/10.1186/s40478-026-02305-y
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