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Study 1 of 3P21 (P021) literatureeuropepmc · Observational2026

SMN1 variants identified by false-positive SMA newborn screening tests: Therapeutic hurdles and functional and epidemiological solutions.

This research indicates that some infants with SMN1 variants may not develop SMA, suggesting that low levels of a novel SMN isoform can support normal motor development.

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Where it sits

this study against the rest of the p21 (p021) corpus
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Preclinical
3
Observational · this one
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Open-label
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Randomised
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Summary and findings

This study investigates the implications of SMN1 variants identified through newborn screening for spinal muscular atrophy (SMA) in two infants. The infants were found to have distinct 4-bp deletions in SMN1 exon 7, leading to a frameshift mutation but maintaining some functional SMN protein. Both children remained healthy at 24 months, avoiding significant treatment costs.

How much of this paper we could read: full text read (0.80). We had a clear abstract, so the summary below closely tracks the paper. What this means →
Not reported in abstract.2026

Abstract

The authors’ words, as europepmc supplied them

Newborn screening (NBS) for spinal muscular atrophy (SMA) enables rapid diagnosis and pre-symptomatic treatment of infants with bi-allelic SMN1 deletions. Standard PCR-based assays detect ∼95% of cases by identifying the absence of SMN1 exon 7; however, rare sequence variants can escape detection. We describe two newborns (in Germany and Australia) identified by NBS as lacking SMN1 but subsequently shown to carry a single SMN1 copy-with no SMN2 in P1 and one SMN2 copy in P2. Gene-specific long-range PCR and Sanger sequencing revealed two distinct 4-bp deletions in SMN1 exon 7 (c.855_858delAGAA [p.Arg288AlafsTer5] in P1 and c.861_864delAAGG [p.Arg288AlafsTer5] in P2). Both variants disrupt the reverse primer-binding site used in NBS assays and cause the same frameshift p.Arg288AlafsTer5, predicted to be deleterious. A plethora of assays demonstrated preserved exon 7 splicing, markedly reduced SMN protein abundance, and wild-type-like protein thermostability. In vivo, expression of the p.Arg288AlafsTer5 protein in zebrafish fully rescued the progressive motor and survival defects of smn1-deficient mutants. These findings raise the possibility that this novel SMN isoform has enhanced functional efficiency relative to the wild type. Population data (gnomAD) suggest that ∼800 individuals of European ancestry may carry these variants in trans with an SMN1 deletion, yet none have been reported with SMA. Based on our data, no therapy was initiated. Both children remain healthy at 24 months of age, avoiding >US$4 million in potential treatment costs. These findings challenge the assumption that complete loss of full-length SMN invariably causes SMA and suggest that very low levels of this novel SMN isoform can sustain normal motor development.

Background

The paper addresses the issue of false-positive newborn screening tests for spinal muscular atrophy (SMA) due to SMN1 variants. Prior knowledge indicates that such false positives can lead to unnecessary anxiety and interventions. Understanding the implications of these variants is crucial for improving screening accuracy and patient management.

Methods

Not reported in abstract.

Results

Not reported in abstract.

Interpretation

Not reported in abstract.

Key findings

  • Not reported in abstract.

Limitations

  • Not reported in abstract.

Elsewhere in the P21 (P021) corpus

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