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Novel homozygous nonsense mutation of MLIP and compensatory alternative splicing. | LitMetric

AI Article Synopsis

  • Despite advancements in clinical sequencing, interpreting variants for diagnosing Mendelian diseases remains challenging.
  • A new adult-onset myopathy linked to a nonsense variant in the LMNA-interacting protein (MLIP) was identified, characterized by muscle weakness and elevated creatine kinase levels.
  • RNA-sequencing revealed a reduced expression of MLIP, attributed to nonsense-mediated decay, and highlighted a compensatory upregulation of alternative isoforms and novel transcripts, emphasizing the importance of MLIP in adult-onset myopathies and showcasing long-read sequencing as a valuable tool for analyzing variants of unknown significance.

Article Abstract

Despite the growing accessibility of clinical sequencing, functional interpretation of variants remains a major hurdle to molecular diagnostics of Mendelian diseases. We aimed to describe a new adult-onset myopathy with muscle weakness and hyperCKemia caused by a nonsense variant in muscular LMNA-interacting protein (MLIP). Following RNA-sequencing, differential expression analysis uncovered a significant downregulation of this gene, which had a surprisingly mild effect on MLIP protein expression. RT-PCR and long-read sequencing (LRS) both support an important transcriptome shift in the patient, where decreased MLIP levels are seemingly due to nonsense-mediated decay of transcripts containing the exon 5 mutation. Moreover, a compensatory mechanism upregulates the functionally lacking isoforms and generates novel transcripts. These results support the recently discovered clinical implications of MLIP variants in myopathies, highlighting for the first time its relevance in adult-onset cases. These results also underline the power of LRS as a tool for the functional assessment of variants of unknown significance (VUS), as well as the definition of accurate isoform profile annotations in a tissue-specific manner.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9174206PMC
http://dx.doi.org/10.1038/s41525-022-00307-yDOI Listing

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