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Pathogenic variants in SMARCA1 cause an X-linked neurodevelopmental disorder modulated by NURF complex composition.

David PickettsGhayda M MirzaaKeqin YanRaissa RelatorSara TimpanoBinnaz YalcinStephan CollinsAlban ZieglerEmily PaoNora OyamaElise Brischoux-BoucherJuliette PiardKristin MonaghanMaria Guillen SacotoWilliam B DobynsKristen L ParkDaniel Fernández-MayoralasAlberto Fernández JaénParul JayakarAlfredo BruscoVincenzo AntonaElisa GiorgioMalin KvarnungBertrand IsidorSolène ConradBenjamin CognéWallid DebK E StuurmanKatalin SterbovaNoor SmalSarah WeckhuysenRenske OegemaA Micheil InnesMaeson LatskoTawfeg Ben-OmranRebecca YehMichael C KruerSomayeh BakhtiariAntigone PapavasiliouSébastien MouttonSophie NambotSirisak ChanprasertSarah PaolucciKait MillerBarbara BurtonKatherine KimEmily O'HeirZandre BruwerKirsten Ann DonaldTjitske KleefstraAmy GoldsteinBrad AngleKelly BontempoPeter MinyPascal JosetFlorence DemurgerEmma HobsonLewis PangLori CarpenterDong LiDominique BonneauBekim Sadikovic
Published in: Research square (2023)
Pathogenic variants in ATP-dependent chromatin remodeling proteins are a recurrent cause of neurodevelopmental disorders (NDDs). The NURF complex consists of BPTF and either the SNF2H ( SMARCA5 ) or SNF2L ( SMARCA1 ) ISWI-chromatin remodeling enzyme. Pathogenic variants in BPTF and SMARCA5 were previously implicated in NDDs. Here, we describe 40 individuals from 30 families with de novo or maternally inherited pathogenic variants in SMARCA1 . This novel NDD was associated with mild to severe ID/DD, delayed or regressive speech development, and some recurrent facial dysmorphisms. Individuals carrying SMARCA1 loss-of-function variants exhibited a mild genome-wide DNA methylation profile and a high penetrance of macrocephaly. Genetic dissection of the NURF complex using Smarca1 , Smarca5 , and Bptf single and double mouse knockouts revealed the importance of NURF composition and dosage for proper forebrain development. Finally, we propose that genetic alterations affecting different NURF components result in a NDD with a broad clinical spectrum.
Keyphrases
  • genome wide
  • copy number
  • dna methylation
  • gene expression
  • dna damage
  • transcription factor
  • single cell