» Articles » PMID: 39962046

RNA Methyltransferase SPOUT1/CENP-32 Links Mitotic Spindle Organization with the Neurodevelopmental Disorder SpADMiSS

Overview
Journal Nat Commun
Specialty Biology
Date 2025 Feb 17
PMID 39962046
Authors
Affiliations
Soon will be listed here.
Abstract

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, here we identify 28 individuals with neurodevelopmental delays from 21 families with bi-allelic variants in SPOUT1/CENP-32 detected by exome/genome sequencing. Zebrafish spout1/cenp-32 mutants show reduction in larval head size with concomitant apoptosis likely associated with altered cell cycle progression. In vivo complementation assays in zebrafish indicate that SPOUT1/CENP-32 missense variants identified in humans are pathogenic. Crystal structure analysis of SPOUT1/CENP-32 reveals that most disease-associated missense variants are located within the catalytic domain. Additionally, SPOUT1/CENP-32 recurrent missense variants show 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.

References
1.
Karaca E, Weitzer S, Pehlivan D, Shiraishi H, Gogakos T, Hanada T . Human CLP1 mutations alter tRNA biogenesis, affecting both peripheral and central nervous system function. Cell. 2014; 157(3):636-50. PMC: 4146440. DOI: 10.1016/j.cell.2014.02.058. View

2.
Shaw N, Brand H, Kupchinsky Z, Bengani H, Plummer L, Jones T . SMCHD1 mutations associated with a rare muscular dystrophy can also cause isolated arhinia and Bosma arhinia microphthalmia syndrome. Nat Genet. 2017; 49(2):238-248. PMC: 5473428. DOI: 10.1038/ng.3743. View

3.
Jayaraman D, Kodani A, Gonzalez D, Mancias J, Mochida G, Vagnoni C . Microcephaly Proteins Wdr62 and Aspm Define a Mother Centriole Complex Regulating Centriole Biogenesis, Apical Complex, and Cell Fate. Neuron. 2016; 92(4):813-828. PMC: 5199216. DOI: 10.1016/j.neuron.2016.09.056. View

4.
Chavali P, Peset I, Gergely F . Centrosomes and mitotic spindle poles: a recent liaison?. Biochem Soc Trans. 2015; 43(1):13-8. DOI: 10.1042/BST20140269. View

5.
Treiber T, Treiber N, Plessmann U, Harlander S, Daiss J, Eichner N . A Compendium of RNA-Binding Proteins that Regulate MicroRNA Biogenesis. Mol Cell. 2017; 66(2):270-284.e13. DOI: 10.1016/j.molcel.2017.03.014. View