Exploring the clinical and mutational spectrum of MORC2 -associated disorders

BACKGROUND: gene are associated with two distinct disorders: Charcot-Marie-Tooth disease type 2Z (CMT2Z) and the recently described DIGFAN (developmental delay, impaired growth, dysmorphic facies and axonal neuropathy) phenotype, which encompasses a broad range of clinical manifestations that vary significantly between individuals. METHODS: Clinical and imaging data from 16 patients were collected. Western blot analysis was performed on 10 identified variants in affected patients as well as on two novel variants without clinical data. Those missense variants were introduced into the wild-type vector transfected into HEK293T cells, and western blot analysis was performed to assess protein expression level. RESULTS: gene were identified in our cohort, including four novel variants. We demonstrate that early-onset MORC2-associated disorders segregate into two principal neurological phenotypes: a predominantly neuromuscular form and a central nervous system-predominant form. The p.Ser87Leu variant, which defines the neuromuscular cluster, was uniquely characterised by a significant reduction in MORC2 protein levels, distinguishing it mechanistically from other variants. Overall, western blot analysis revealed no statistically significant difference in protein expression levels between variants related to CMT2Z and DIGFAN cases. CONCLUSION: gene. Further accumulation of patient data is required to determine whether this observation correlates with other specific variants.

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Journal
Journal of Medical Genetics
Published
2026-08-28
DOI
https://doi.org/10.1136/jmg-2025-110787
Primary Topic
Hereditary Neurological Disorders
Type
article
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article

Exploring the clinical and mutational spectrum of MORC2 -associated disorders

B. Myrzaliyeva, S I Kutsev, Marcello Scala, Valeria Capra et al.
Journal of Medical Genetics
Hereditary Neurological Disorders
article

Exploring the clinical and mutational spectrum of MORC2 -associated disorders

B. Myrzaliyeva, S I Kutsev, Marcello Scala, Valeria Capra, Aysylu Murtazina, Л. А. Бессонова, Federico Zara, Romano Tenconi, Cyril Mignot, T.P. Markova, Arnaud Isapof, Timofei Vizerov, Andrey Marakhonov, Elena Dadali, Nina Demina, Oxana Ryzhkova, Artem Borovikov, Neena Champaigne, Ilya Kanivets, Olga Shchagina, Claudio Bruno, Iuliia Viakhireva, Natalia Semenova, Kameryn Butler, Philipp Sviridov, Mikhail Skoblov, Hannah Moore, Alexandra Filatova, Dmitrii Subbotin, Eugenii Tatarsky
article en

Abstract

BACKGROUND: gene are associated with two distinct disorders: Charcot-Marie-Tooth disease type 2Z (CMT2Z) and the recently described DIGFAN (developmental delay, impaired growth, dysmorphic facies and axonal neuropathy) phenotype, which encompasses a broad range of clinical manifestations that vary significantly between individuals. METHODS: Clinical and imaging data from 16 patients were collected. Western blot analysis was performed on 10 identified variants in affected patients as well as on two novel variants without clinical data. Those missense variants were introduced into the wild-type vector transfected into HEK293T cells, and western blot analysis was performed to assess protein expression level. RESULTS: gene were identified in our cohort, including four novel variants. We demonstrate that early-onset MORC2-associated disorders segregate into two principal neurological phenotypes: a predominantly neuromuscular form and a central nervous system-predominant form. The p.Ser87Leu variant, which defines the neuromuscular cluster, was uniquely characterised by a significant reduction in MORC2 protein levels, distinguishing it mechanistically from other variants. Overall, western blot analysis revealed no statistically significant difference in protein expression levels between variants related to CMT2Z and DIGFAN cases. CONCLUSION: gene. Further accumulation of patient data is required to determine whether this observation correlates with other specific variants.

Journal of Medical Genetics
University of Padua (IT), Medical University of South Carolina (US), Université Sorbonne Nouvelle (FR), Kazakh National Medical University (KZ), Istituto Giannina Gaslini (IT), Sorbonne Université (FR), Hôpital Armand-Trousseau (FR), Assistance Publique – Hôpitaux de Paris (FR), Russian Medical Academy of Continuous Professional Education (RU), Research Centre for Medical Genetics (RU), Kazakhstan Medical University (KZ), Genomed (Poland) (PL), Greenwood Genetic Center (US), Istituti di Ricovero e Cura a Carattere Scientifico (IT), Université Paris 1 Panthéon-Sorbonne (FR), University of Genoa (IT)
Good health and well-being
Openalex Percentile: Top 15%
Hereditary Neurological Disorders
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