2026
article
OpenAlex
Anna Molenaar, Ekta Pathak, Miriam Bernecker, Noémi Mallet et autres
BACKGROUND: Allan-Herndon-Dudley syndrome (AHDS) is an X-linked neurodevelopmental disorder caused by loss of the thyroid hormone (TH) transporter MCT8, resulting in central TH deprivation and disrupted cortical maturation, cognition, and motor control. MCT8/OATP1C1 double-knockout (dKO) mice faithfully model the human disease, recapitulating …
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2026
article
OpenAlex
Claudia Kiermayer, Rebecca Erdelen, Sonja Charlotte Schriever, Ramona Böhm et autres
The mitochondrial selenoenzyme thioredoxin reductase 2 (TXNRD2) plays a critical role in redox homeostasis and reactive oxygen species ( ROS) scavenging. While heart-specific deletion of Txnrd2 in mice resulted in cardiac dysfunction, TXNRD2 function in skeletal muscle, the major component of lean …
de
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2026
article
OpenAlex
Natalie Taege, Jan H. Britsemmer, Andreas Israel, Christin Krause et autres
expression differences in a state of obesity.
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2025
preprint
OpenAlex
Anna Molenaar, Ekta Pathak, Miriam Bernecker, Noémi Mallet et autres
Abstract Background The Allan-Herndon-Dudley syndrome (AHDS) is a rare, X-linked human genetic disorder caused by mutations in the monocarboxylate transporter 8 (MCT8), essential for thyroid hormone (TH) transport across the blood-brain-barrier. The resulting central TH deprivation disrupts brain maturation and function, leading …
de
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2025
article
OpenAlex
Anna Molenaar, Noémi Mallet, Marin Bralo, Luciano Hoeher et autres
Deficiency of the Monocarboxylate Transporter 8 (MCT8) severely impairs thyroid hormone (TH) transport into the brain, disrupting brain development as well as peripheral TH homeostasis. Studies assessing MCT8 expression patterns and tissue-specific pathologies induced by local TH-deficiency are often inconclusive due to …
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2025
article
OpenAlex
Luke P. Harrison, Sonja Charlotte Schriever, Miriam Bernecker, Noémi Mallet et autres
Survivors of childhood cancers who received high doses (40-60 Gy) of cranial irradiation (CI) have increased risks of developing obesity, type 2 diabetes, and metabolic syndrome (MetS). Here, we subjected mice to CI of 0, 0.5, or 2 Gy directed to the …
de
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2025
other
OpenAlex
Luke P. Harrison, Sonja Charlotte Schriever, Miriam Bernecker, Noémi Mallet et autres
Survivors of childhood cancers who received high doses (40-60 Gy) of cranial irradiation (CI) have increased risks of developing obesity, type 2 diabetes, and metabolic syndrome (MetS). Here, we subjected mice to CI of 0, 0.5, or 2 Gy directed to the …
Accès ouvert
2025
other
OpenAlex
Luke P. Harrison, Sonja Charlotte Schriever, Miriam Bernecker, Noémi Mallet et autres
Survivors of childhood cancers who received high doses (40-60 Gy) of cranial irradiation (CI) have increased risks of developing obesity, type 2 diabetes, and metabolic syndrome (MetS). Here, we subjected mice to CI of 0, 0.5, or 2 Gy directed to the …
Accès ouvert
2025
article
OpenAlex
Inderjeet Singh, Yasuhiro Onogi, Filipe Menezes, Dina Khasanova et autres
Adipose tissue is a central organiser of systemic lipid homeostasis and a pharmacological target in obesity, orchestrating cellular responses to environmental cues. Nutritionally regulated adipose and cardiac enriched protein (NRAC) is a small adipocyte-specific transmembrane protein with unknown function. Here, we show …
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2025
preprint
OpenAlex
Anna Molenaar, Noémi Mallet, Marin Bralo, Luciano Hoeher et autres
de
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2025
article
OpenAlex
Miriam Bernecker, Annette Feuchtinger, Anna Molenaar, Sonja Charlotte Schriever et autres
BACKGROUND: Obese subjects undergoing weight loss often fear the Yoyo dieting effect, which involves regaining or even surpassing their initial weight. To date, our understanding of such long-term obesity and weight cycling effects is still limited and often based on only short-term …
de
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Accès ouvert
2024
preprint
OpenAlex
Ashok Kumar Jayavelu, Jeffrey J. Liu, Sonja Charlotte Schriever, Paul Thomas Pfluger et autres
SUMMARY Reversible post-translational modification (PTMs) is a fundamental mechanism of cellular signal transduction. In vivo and ex vivo studies to profile PTMs have greatly advanced our understanding of the complexities of cellular signaling. However, apart from the most commonly studied PTMs, large-scale …
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