Login / Signup

RNA methyltransferase SPOUT1/CENP-32 links mitotic spindle organization with the neurodevelopmental disorder SpADMiSS.

Avinash V DharmadhikariMaria Alba AbadSheraz KhanReza MaroofianTristan T SandsFarid UllahItaru SamejimaMartin A WearKiara E MooreElena KondakovaNatalia MitinaTheres SchaubGrace K LeeChristine H UmandapSara M BergerAlejandro D IglesiasBernt PoppRami Abou JamraHeinz GabrielStefan RentasAlyssa L RippertKosuke IzumiLaura K ConlinDaniel C KoboldtTheresa Mihalic MosherScott E HickeyDara V F AlbertHaley NorwoodAmy Feldman LewandaHongzheng DaiPengfei LiuTadahiro MitaniDana MarafiDavut PehlivanJennifer E PoseyNatalie LippaNatalie VenaErin L HeinzenDavid B GoldsteinCyril MignotJean-Madeleine de Sainte AgatheNouriya Abbas Al-SannaaMina ZamaniSaeid SadeghianReza AzizimalamiriTahere SeifiaMaha S ZakiGhada M H Abdel-SalamMohamed Abdel-HamidLama AlabdiFowzan Sami AlkurayaHeba DawoudAya LoftyPeter BauerGiovanni ZifarelliErum AfzalFaisal ZafarStephanie EfthymiouDaniel GossettMeghan C TowneRaey YeneabatSandeep N WontakalVimla S AggarwalJill A RosenfeldVictor TarabykinShinya OhtaJames R LupskiHenry HouldenWilliam C EarnshawErica E DavisA Arockia JeyaprakashJun Liao
Published in: medRxiv : the preprint server for health sciences (2024)
SPOUT1/CENP-32 encodes a putative SPOUT RNA methyltransferase previously identified as a mitotic chromosome associated protein. SPOUT1/CENP-32 depletion leads to centrosome detachment from the spindle poles and chromosome misalignment. Aided by gene matching platforms, we identified 24 individuals with neurodevelopmental delays from 18 families with bi-allelic variants in SPOUT1/CENP-32 detected by exome/genome sequencing. Zebrafish spout1/cenp-32 mutants showed reduction in larval head size with concomitant apoptosis likely associated with altered cell cycle progression. In vivo complementation assays in zebrafish indicated that SPOUT1/CENP-32 missense variants identified in humans are pathogenic. Crystal structure analysis of SPOUT1/CENP-32 revealed that most disease-associated missense variants mapped to the catalytic domain. Additionally, SPOUT1/CENP-32 recurrent missense variants had reduced methyltransferase activity in vitro and compromised centrosome tethering to the spindle poles in human cells. Thus, SPOUT1/CENP-32 pathogenic variants cause an autosomal recessive neurodevelopmental disorder: SpADMiSS ( SPOUT1 Associated Development delay Microcephaly Seizures Short stature) underpinned by mitotic spindle organization defects and consequent chromosome segregation errors.
Keyphrases