Skip to main navigation Skip to search Skip to main content

Novel SCYL2 Mutations and Arthrogryposis Multiplex Congenita 4: Case Report and Review of the Literature

  • Khaled Zamel
  • , Abdulrahman Ahmed Al-Subaiey
  • , Mohamed Alsabbagh
  • , Abeer Fadda
  • , Amira Saeed
  • , Bruno Mourao Pacheco
  • , Bernice Lo
  • , Ruba Benini*
  • *Corresponding author for this work
  • Sidra Medicine
  • Weill Cornell Medicine-Qatar
  • HBKU College of Health and Life Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

SCY1 Like Pseudokinase 2 (SCYL2) is a protein that regulates secretory protein trafficking and plays a pivotal role in neurodevelopment by attenuating excitotoxicity. Neurogenic arthrogryposis due to SCYL2 mutations, also known as arthrogryposis multiplex congenita 4 (AMC4), is a rare condition that presents with microcephaly, agenesis of the corpus callosum, optic atrophy, global developmental delay, and early lethality. We used whole-exome sequencing to identify pathogenic variants, DynaMut2 to determine the predicted effect on protein stability, and Western blot to investigate the effect on protein expression. We present two novel missense mutations in SCYL2 resulting in loss of function at the protein level in a pediatric case of AMC4, further highlighting the key role of SCYL2 in neuronal cell survival and healthy brain development. There is diversity in the pathological features among previously published cases of AMC4, most likely due to the nature of each mutation. This report summarizes the clinical data of all known patients with SCYL2 mutations.

Original languageEnglish
Article number3079
Number of pages15
JournalInternational Journal of Molecular Sciences
Volume26
Issue number7
DOIs
Publication statusPublished - 27 Mar 2025

Keywords

  • Arthrogryposis
  • Neurodevelopmental disorder
  • Scyl2

Fingerprint

Dive into the research topics of 'Novel SCYL2 Mutations and Arthrogryposis Multiplex Congenita 4: Case Report and Review of the Literature'. Together they form a unique fingerprint.

Cite this