OBJECTIVE: The pathogenesis of thyroid hyperfunctioning adenomas is still only partially understood and controversy exists about the frequency of gain-of-function mutations of the TSH receptor or G(s)alpha gene, which activate the cAMP pathway. The nuclear transcription factors cAMP-responsive element binding protein (CREB) and inducible cAMP early repressor (ICER) are among the final targets of this signalling cascade. DESIGN: In our study we focused on the expression of CREB and ICER genes in the nodular as well as in the extranodular tissue of hyperfunctioning tumours of the thyroid. METHODS: RT-PCR and Western blot analysis were performed in a series of 14 patients. The presence of an activating mutation of the TSH receptor or of t...
In about 30-40% of GH-secreting adenomas, gain-of-function mutations of the Gsalpha gene, which conv...
In thyroid hyperfunctioning adenomas, somatic mutations of the TSH receptor gene responsible for the...
In the thyroid, cAMP controls both thyroid growth and function. Gain-of-function mutations in the th...
OBJECTIVE: The pathogenesis of thyroid hyperfunctioning adenomas is still only partially understood...
In human normal thyrocytes, the cAMP-responsive signaling pathway plays a central role in gene regul...
OBJECTIVE: Reduced expression or defective targeting of the sodium/iodide symporter (NIS) to the ce...
of cAMP-responsive element binding protein and inducible cAMP early repressor in hyperfunctioning th...
Hyperfunctioning thyroid nodules are characterized by the presence of spontaneous somatic mutations ...
Objective: Constitutively activating mutations of the thyrotrophin receptor (TSHR) are the main mole...
The molecular biology of follicular cell growth in thyroid nodules is still poorly understood. Becau...
Abstract The molecular biology of follicular cell growth in thyroid nodules is still poorly under...
In toxic thyroid adenomas, mutations in the TSH receptor (TSH-R) gene or the gene encoding the alpha...
(V Vanvooren and A Allgeier contributed equally to this work) Objective: The cyclic AMP (cAMP) casca...
It has recently been shown that somatic and germ line mutations of the TSH receptor gene cause auton...
Cyclic AMP (cAMP) is the major intracellular second messenger of thyrotropin (TSH) action on thyroid...
In about 30-40% of GH-secreting adenomas, gain-of-function mutations of the Gsalpha gene, which conv...
In thyroid hyperfunctioning adenomas, somatic mutations of the TSH receptor gene responsible for the...
In the thyroid, cAMP controls both thyroid growth and function. Gain-of-function mutations in the th...
OBJECTIVE: The pathogenesis of thyroid hyperfunctioning adenomas is still only partially understood...
In human normal thyrocytes, the cAMP-responsive signaling pathway plays a central role in gene regul...
OBJECTIVE: Reduced expression or defective targeting of the sodium/iodide symporter (NIS) to the ce...
of cAMP-responsive element binding protein and inducible cAMP early repressor in hyperfunctioning th...
Hyperfunctioning thyroid nodules are characterized by the presence of spontaneous somatic mutations ...
Objective: Constitutively activating mutations of the thyrotrophin receptor (TSHR) are the main mole...
The molecular biology of follicular cell growth in thyroid nodules is still poorly understood. Becau...
Abstract The molecular biology of follicular cell growth in thyroid nodules is still poorly under...
In toxic thyroid adenomas, mutations in the TSH receptor (TSH-R) gene or the gene encoding the alpha...
(V Vanvooren and A Allgeier contributed equally to this work) Objective: The cyclic AMP (cAMP) casca...
It has recently been shown that somatic and germ line mutations of the TSH receptor gene cause auton...
Cyclic AMP (cAMP) is the major intracellular second messenger of thyrotropin (TSH) action on thyroid...
In about 30-40% of GH-secreting adenomas, gain-of-function mutations of the Gsalpha gene, which conv...
In thyroid hyperfunctioning adenomas, somatic mutations of the TSH receptor gene responsible for the...
In the thyroid, cAMP controls both thyroid growth and function. Gain-of-function mutations in the th...