4.8 Article

Hypomorphism in human NSMCE2 linked to primordial dwarfism and insulin resistance

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 124, Issue 9, Pages 4028-4038

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI73264

Keywords

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Funding

  1. Wellcome Trust [WT098051, WT098498, WT091551, WT095515, WT091310]
  2. Medical Research Council Centre for Obesity and Related Disorders
  3. United Kingdom National Institute for Health Research (NIHR) Cambridge Biomedical Research Centre
  4. Cancer Research UK
  5. UK Medical Research Council
  6. Leukaemia Lymphoma Research (United Kingdom)
  7. EU/EFPIA Innovative Medicines Initiative Joint Undertaking [115372]
  8. Cancer Research UK [15394] Funding Source: researchfish
  9. Medical Research Council [G0600717, MC_UU_12012/5/B, G0600717B] Funding Source: researchfish
  10. National Institute for Health Research [NF-SI-0513-10109] Funding Source: researchfish
  11. MRC [G0600717] Funding Source: UKRI

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Structural maintenance of chromosomes (SMC) complexes are essential for maintaining chromatin structure and regulating gene expression. Two the three known SMC complexes, cohesin and condensin, are important for sister chromatid cohesion and condensation, respectively; however, the function of the third complex, SMC5-6, which includes the E3 SUMO-ligase NSMCE2 (also widely known as MMS21) is less clear. Here, we characterized 2 patients with primordial dwarfism, extreme insulin resistance, and gonadal failure and identified compound heterozygous frameshift mutations in NSMCE2. Both mutations reduced NSMCE2 expression in patient cells. Primary cells from one patient showed increased micronucleus and nucleoplasmic bridge formation, delayed recovery of DNA synthesis, and reduced formation of foci containing Bloom syndrome helicase (BLM) after hydroxyurea-induced replication fork stalling. These nuclear abnormalities in patient dermal fibroblast were restored by expression of WT NSMCE2, but not a mutant form lacking SUMO-ligase activity. Furthermore, in zebrafish, knockdown of the NSMCE2 ortholog produced dwarfism, which was ameliorated by reexpression of WT, but not SUMO-ligase-deficient NSMCE. Collectively, these findings support a role for NSMCE2 in recovery from DNA damage and raise the possibility that loss of its function produces dwarfism through reduced tolerance of replicative stress.

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