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Hydrops fetalis due to loss of function of hNav1.4 channel via compound heterozygous variants

  • Tomoya Kubota,
  • Miho Nagata,
  • Kazuko Takagi,
  • Yasuki Ishihara,
  • Kurumi Kojima,
  • Yuka Uchikura,
  • Reina Yamamoto,
  • Ayumi Yonei,
  • Erina Ozaki,
  • Natsuki Kira,
  • Satoe Takahashi,
  • Kazuaki Homma,
  • Yohei Miyashita,
  • Minenori Eguchi-Ishimae,
  • Norio Sakai,
  • Yohihiro Asano,
  • Yasushi Sakata,
  • Keiichi Ozono,
  • Mariko Eguchi,
  • Masanori P. Takahashi

摘要

Hydrops fetalis, characterized by abnormal fluid accumulation in fetuses, presents a significant risk of stillbirth and neonatal mortality. Although the etiology of nonimmune hydrops fetalis (NIHF) is multifaceted, recent studies have highlighted genetic factors as crucial determinants. This study focused on a family with three consecutive stillbirths, each with pronounced hydrops fetalis. Using whole-exome sequencing (WES), we identified compound heterozygous variants of the SCN4A gene encoding the voltage-gated sodium channel of the skeletal muscle (hNav1.4), c.2429T>A p.L810Q and c.4556T>C p.F1519S, in all three deceased infants. A functional analysis conducted using the whole-cell patch-clamp technique revealed loss-of-function defects in both variant channels, with F1519S exhibiting a complete loss of ionic current and L810Q showing a reduced channel opening. These findings support the pathogenicity of SCN4A variants in NIHF and underscore the significance of functional studies in elucidating genotype-phenotype correlations. Furthermore, our study emphasizes the diagnostic value of WES in cases of NIHF in where standard genetic testing fails to identify causative variants.