Abstract

The sodium (Na+):multivitamin transporter (SMVT), encoded by SLC5A6, belongs to the sodium:solute symporter family and is required for the Na+-dependent uptake of biotin (vitamin B7), pantothenic acid (vitamin B5), the vitamin-like substance α-lipoic acid, and iodide. Compound heterozygous SLC5A6 variants have been reported in individuals with variable multisystemic disorder, including failure to thrive, developmental delay, seizures, cerebral palsy, brain atrophy, gastrointestinal problems, immunodeficiency, and/or osteopenia. We expand the phenotypic spectrum associated with biallelic SLC5A6 variants affecting function by reporting five individuals from three families with motor neuropathies. We identified the homozygous variant c.1285 A > G [p.(Ser429Gly)] in three affected siblings and a simplex patient and the maternally inherited c.280 C > T [p.(Arg94*)] variant and the paternally inherited c.485 A > G [p.(Tyr162Cys)] variant in the simplex patient of the third family. Both missense variants were predicted to affect function by in silico tools. 3D homology modeling of the human SMVT revealed 13 transmembrane helices (TMs) and Tyr162 and Ser429 to be located at the cytoplasmic facing region of TM4 and within TM11, respectively. The SLC5A6 missense variants p.(Tyr162Cys) and p.(Ser429Gly) did not affect plasma membrane localization of the ectopically expressed multivitamin transporter suggesting reduced but not abolished function, such as lower catalytic activity. Targeted therapeutic intervention yielded clinical improvement in four of the five patients. Early molecular diagnosis by exome sequencing is essential for timely replacement therapy in affected individuals.

Highlights

  • The sodium (Na+):multivitamin transporter (SMVT) is a member of the sodium:solute symporter (SSS) family, a group of membrane proteins mediating the transport of the respective solute(s) by using the sodium gradient

  • SMVT is required for the Na+-dependent uptake of the water-soluble vitamins pantothenic acid and biotin, the vitamin-like substance α-lipoic acid, and iodide [2,3,4,5]

  • Nerve conduction studies (NCS) and needle EMG demonstrated mixed axonal and demyelinating motor findings corresponding to the areas of weakness on physical examination (Table 1 and Supplementary Table 1)

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Summary

INTRODUCTION

The sodium (Na+):multivitamin transporter (SMVT) is a member of the sodium:solute symporter (SSS) family, a group of membrane proteins mediating the transport of the respective solute(s) by using the sodium gradient. A 3-year-old girl with compound heterozygous SLC5A6 p.(Val141A- distal right upper extremity weakness, along with wasting of the lafs*34) and p.(Gln622Argfs*51) variants had failure to thrive and thenar and hypothenar eminences and interossei bilaterally. Report five individuals from three families, including three siblings and She had premature graying of hair at the age of 4 months Her two singletons, with biallelic variants in SLC5A6 and motor past medical history was notable for a right inguinal neuropathies.

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