z-logo
open-access-imgOpen Access
A NovelSLC5A5Variant Reveals the Crucial Role of Kinesin Light Chain 2 in Thyroid Hormonogenesis
Author(s) -
Mariano Martín,
Carlos P. Modenutti,
Mauco Lucas Gil Rosas,
Victoria Peyret,
Romina C. Geysels,
Carlos Eduardo Bernal Barquero,
Gabriela Sobrero,
Liliana Muñoz,
Malvina Signorino,
Graciela Testa,
Mirta Miras,
Ana M. MasiniRepiso,
Nora B. Calcaterra,
Gabriela Coux,
Nancy Carrasco,
Marcelo A. Martí,
Juan P. Nicola
Publication year - 2021
Publication title -
the journal of clinical endocrinology and metabolism
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.206
H-Index - 353
eISSN - 1945-7197
pISSN - 0021-972X
DOI - 10.1210/clinem/dgab283
Subject(s) - gene knockdown , thyroid , iodide , congenital hypothyroidism , sodium iodide symporter , symporter , chemistry , gene , biology , biochemistry , genetics , organic chemistry , transporter
Context Iodide transport defect (ITD) (Online Mendelian Inheritance in Man No. 274400) is an uncommon cause of dyshormonogenic congenital hypothyroidism due to loss-of-function variants in the SLC5A5 gene, which encodes the sodium/iodide symporter (NIS), causing deficient iodide accumulation in thyroid follicular cells. Objective This work aims to determine the molecular basis of a patient’s ITD clinical phenotype. Methods The propositus was diagnosed with dyshormonogenic congenital hypothyroidism with minimal 99mTc-pertechnetate accumulation in a eutopic thyroid gland. The propositus SLC5A5 gene was sequenced. Functional in vitro characterization of the novel NIS variant was performed. Results Sanger sequencing revealed a novel homozygous missense p.G561E NIS variant. Mechanistically, the G561E substitution reduces iodide uptake, because targeting of G561E NIS to the plasma membrane is reduced. Biochemical analyses revealed that G561E impairs the recognition of an adjacent tryptophan-acidic motif by the kinesin-1 subunit kinesin light chain 2 (KLC2), interfering with NIS maturation beyond the endoplasmic reticulum, and reducing iodide accumulation. Structural bioinformatic analysis suggests that G561E shifts the equilibrium of the unstructured tryptophan-acidic motif toward a more structured conformation unrecognizable to KLC2. Consistently, knockdown of Klc2 causes defective NIS maturation and consequently decreases iodide accumulation in rat thyroid cells. Morpholino knockdown of klc2 reduces thyroid hormone synthesis in zebrafish larvae leading to a hypothyroid state as revealed by expression profiling of key genes related to the hypothalamic-pituitary-thyroid axis. Conclusion We report a novel NIS pathogenic variant associated with dyshormonogenic congenital hypothyroidism. Detailed molecular characterization of G561E NIS uncovered the significance of KLC2 in thyroid physiology.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom