A recurrent de novo MAX p.Arg60Gln variant causes a syndromic overgrowth disorder through differential expression of c-Myc target genes.

Harris, Erica L; Roy, Vincent; Montagne, Martin; Rose, Ailsa M S; Livesey, Helen; Reijnders, Margot R F; Hobson, Emma; Sansbury, Francis H et al. · Am J Hum Genet · 2024

basic_science · Level V

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Abstract

Cyclin D2 (CCND2) stabilization underpins a range of macrocephaly-associated disorders through mutation of CCND2 or activating mutations in upstream genes encoding PI3K-AKT pathway components. Here, we describe three individuals with overlapping macrocephaly-associated phenotypes who carry the same recurrent de novo c.179G>A (p.Arg60Gln) variant in Myc-associated factor X (MAX). The mutation, located in the b-HLH-LZ domain, causes increased intracellular CCND2 through increased transcription but it does not cause stabilization of CCND2. We show that the purified b-HLH-LZ domain of MAX<sup>Arg60Gln</sup> (Max<sup>∗Arg60Gln</sup>) binds its target E-box sequence with a lower apparent affinity. This leads to a more efficient heterodimerization with c-Myc resulting in an increase in transcriptional activity of c-Myc in individuals carrying this mutation. The recent development of Omomyc-CPP, a cell-penetrating b-HLH-LZ-domain c-Myc inhibitor, provides a possible therapeutic option for MAX<sup>Arg60Gln</sup> individuals, and others carrying similar germline mutations resulting in dysregulated transcriptional c-Myc activity.

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