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Thyroid hormone synthesis continues despite biallelic thyroglobulin mutation with cell death
Xiaohan Zhang, Aaron P. Kellogg, Cintia E. Citterio, Hao Zhang, Dennis Larkin, Yoshiaki Morishita, Héctor M. Targovnik, Viviana A. Balbi, Peter Arvan
Xiaohan Zhang, Aaron P. Kellogg, Cintia E. Citterio, Hao Zhang, Dennis Larkin, Yoshiaki Morishita, Héctor M. Targovnik, Viviana A. Balbi, Peter Arvan
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Research Article Endocrinology

Thyroid hormone synthesis continues despite biallelic thyroglobulin mutation with cell death

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Abstract

Complete absence of thyroid hormone is incompatible with life in vertebrates. Thyroxine is synthesized within thyroid follicles upon iodination of thyroglobulin conveyed from the endoplasmic reticulum (ER), via the Golgi complex, to the extracellular follicular lumen. In congenital hypothyroidism from biallelic thyroglobulin mutation, thyroglobulin is misfolded and cannot advance from the ER, eliminating its secretion and triggering ER stress. Nevertheless, untreated patients somehow continue to synthesize sufficient thyroxine to yield measurable serum levels that sustain life. Here, we demonstrate that TGW2346R/W2346R humans, TGcog/cog mice, and TGrdw/rdw rats exhibited no detectable ER export of thyroglobulin, accompanied by severe thyroidal ER stress and thyroid cell death. Nevertheless, thyroxine was synthesized, and brief treatment of TGrdw/rdw rats with antithyroid drug was lethal to the animals. When untreated, remarkably, thyroxine was synthesized on the mutant thyroglobulin protein, delivered via dead thyrocytes that decompose within the follicle lumen, where they were iodinated and cannibalized by surrounding live thyrocytes. As the animals continued to grow goiters, circulating thyroxine increased. However, when TGrdw/rdw rats age, they cannot sustain goiter growth that provided the dying cells needed for ongoing thyroxine synthesis, resulting in profound hypothyroidism. These results establish a disease mechanism wherein dead thyrocytes support organismal survival.

Authors

Xiaohan Zhang, Aaron P. Kellogg, Cintia E. Citterio, Hao Zhang, Dennis Larkin, Yoshiaki Morishita, Héctor M. Targovnik, Viviana A. Balbi, Peter Arvan

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Figure 6

In congenital goiter with mutant TG, thyrocyte cell mass provides the dead-cell–derived substrate for T4 synthesis.

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In congenital goiter with mutant TG, thyrocyte cell mass provides the de...
(A–H) Microscopy of WT and TGrdw/rdw rat thyroid follicles. (A) WT rat thyroid. Cross-sections of several thyroid follicles are shown; each follicle lumen (F.L.) is acellular but filled with WT Tg protein (thin yellow arrows). Scale bar: 10 μm in 1.0 μm increments. (B) TGrdw/rdw rat thyroid. Yellow arrows point to the follicle lumina; note the enlarged cytoplasm and abnormal, cellular contents of the follicle lumina. Scale bar: 10 μm in 1.0 μm increments. (C–H) Transmission EM survey of TGrdw/rdw rat thyroid follicles. Scale bars: 2 μm. (C) Engorged ER vacuoles in the basal cytoplasm with apically displaced nuclei. (D–H) Dead-cell ghosts in various thyroid follicles, each at a different stage of cellular disintegration within the follicle lumen. (G) Living thyrocytes with abundant apical microvilli, which have internalized material from the follicle lumen into endo-lysosomes. (H) Until new dead cells enter the follicle lumen, there is progressive clearance of cellular debris from the luminal cavity. (I) Thyroid gland size (normalized to body weight) in a cohort of young versus older animals (open symbols represent rats at 8.9 ± 1.7 weeks of age; closed symbols represent rats at 33.4 ± 2.6 weeks of age; males are shown as squares and females as circles) (mean ± SD). ***P < 0.001 (2-way ANOVA, Bonferroni post hoc test). (J) Total T4 levels in serum of WT (+/+) and TGrdw/rdw rats as a function of age (males are shown as squares and females as circles) (mean ± SD). **P < 0.01, ***P < 0.001 (2-way ANOVA, Bonferroni post hoc test).

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