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Comparative Phenotyping of Mice Reveals Canonical and Noncanonical Physiological Functions of TRα and TRβ
Georg Sebastian Hönes1, Daniela Geist1, Christina Wenzek1
1Department of Endocrinology, Diabetes and Metabolism and Division of Laboratory Research, University Hospital Essen, University of Duisburg-Essen, Essen 45147, Germany.
Abstract:
Thyroid hormone (TH) effects are mediated through TH receptors (TRs), TRα1, TRβ1, and TRβ2. The TRs bind to the DNA and regulate expression of TH target genes (canonical signaling). In addition, they mediate activation of signaling pathways (noncanonical signaling). Whether noncanonical TR action contributes to the spectrum of TH effects is largely unknown. The aim of this study was to attribute physiological effects to the TR isoforms and their canonical and noncanonical signaling. We conducted multiparameter phenotyping in male and female TR knockout mice (TRαKO, TRβKO), mice with disrupted canonical signaling due to mutations in the TR DNA binding domain (TRαGS, TRβGS), and their wild-type littermates. Perturbations in senses, especially hearing (mainly TRβ with a lesser impact of TRα), visual acuity, retinal thickness (TRα and TRβ), and in muscle metabolism (TRα) highlighted the role of canonical TR action. Strikingly, selective abrogation of canonical TR action often had little phenotypic consequence, suggesting that noncanonical TR action sufficed to maintain the wild-type phenotype for specific effects. For instance, macrocytic anemia, reduced retinal vascularization, or increased anxiety-related behavior were only observed in TRαKO but not TRαGS mice. Noncanonical TRα action improved energy utilization and prevented hyperphagia observed in female TRαKO mice. In summary, by examining the phenotypes of TRα and TRβ knockout models alongside their DNA binding-deficient mutants and wild-type counterparts, we could establish that the noncanonical actions of TRα and TRβ play a crucial role in modulating sensory, behavioral, and metabolic functions and, thus, contribute to the spectrum of physiological TH effects.
Insights
Thyroid hormone (TH) effects involve both DNA binding (canonical) and non-DNA binding (noncanonical) actions of TH receptors (TRs). Noncanonical TR actions significantly contribute to sensory, behavioral, and metabolic functions.
Area of Science:
- Endocrinology
- Molecular Biology
- Physiology
Background:
- Thyroid hormone (TH) exerts its effects via TH receptors (TRs), mediating both canonical (DNA binding) and noncanonical (signaling pathway activation) actions.
- The precise physiological contributions of these distinct TR signaling mechanisms remain largely uncharacterized.
Purpose of the Study:
- To delineate the specific physiological roles of TR isoforms (TRα and TRβ) and their canonical versus noncanonical signaling pathways.
- To understand how these mechanisms contribute to the overall spectrum of TH effects.
Main Methods:
- Multiparameter phenotyping was performed on TR knockout (TRαKO, TRβKO) mice and mice with mutations disrupting DNA binding (TRαGS, TRβGS).
- Comparisons were made between these genetically modified mice and their wild-type littermates.
Main Results:
- Canonical TR action is crucial for sensory functions (hearing, vision) and muscle metabolism.
- Noncanonical TR signaling often compensated for the loss of canonical action, maintaining wild-type phenotypes in specific contexts.
- Specific effects like macrocytic anemia, reduced retinal vascularization, and anxiety were observed only in TR knockouts, not in DNA binding-deficient mutants, highlighting noncanonical TRα roles in energy utilization and preventing hyperphagia.
Conclusions:
- Both canonical and noncanonical signaling pathways of TRα and TRβ are essential for normal physiological function.
- Noncanonical TR actions play a critical role in modulating sensory, behavioral, and metabolic processes, contributing significantly to the diverse effects of thyroid hormone.
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