Alternative splicing expands the clinical spectrum of NDUFS6-related mitochondrial disorders

可变剪接扩大了 NDUFS6 相关线粒体疾病的临床范围

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作者:Camila Armirola-Ricaurte, Noortje Zonnekein, Georgios Koutsis, Silvia Amor-Barris, Ana Lara Pelayo-Negro, Derek Atkinson, Stephanie Efthymiou, Valentina Turchetti, Argyris Dinopoulos, Antonio Garcia, Mert Karakaya, German Moris, Ayşe Ipek Polat, Uluç Yiş, Carmen Espinos, Liedewei Van de Vondel, Els

Conclusion

We expand the clinical spectrum of NDUFS6-related mitochondrial disorders to include axonal CMT, emphasizing the clinical and pathophysiologic overlap between these 2 clinical entities. This work demonstrates the critical role that alternative splicing may play in modulating the severity of a genetic disorder, emphasizing the need for careful consideration when interpreting splice variants and their implications on disease prognosis.

Methods

The patients underwent extensive clinical examinations. Exome sequencing was done in 4 affected individuals. The functional effect of the c.309+5G>A variant was investigated in patient-derived EBV-transformed lymphoblasts at the complementary DNA, protein, and mitochondrial level. Alternative splicing was evaluated using complementary DNA long-read sequencing.

Purpose

We describe 3 families with Charcot-Marie-Tooth neuropathy (CMT), harboring a homozygous NDUFS6 NM_004553.6:c.309+5G>A variant previously linked to fatal Leigh syndrome. We aimed to characterize clinically and molecularly the newly identified patients and understand the mechanism underlying their milder phenotype.

Results

All patients presented with early-onset, slowly progressive axonal CMT, and nystagmus; some exhibited additional central nervous system symptoms. The c.309+5G>A substitution caused the expression of aberrantly spliced transcripts and negligible levels of the canonical transcript. Immunoblotting showed reduced levels of mutant isoforms. No detectable defects in mitochondrial complex stability or bioenergetics were found.

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