Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins

Iodide transport is necessary for the synthesis of thyroid hormones following accumulation in the follicular lumen out of thyroid cells, via channels unknown with the exception of pendrin. According to our hypothesis, TMEM16A could be the main molecular identity of the channel mediating iodide e...

Full description

Bibliographic Details
Main Author: Iosco, Carmela <1983>
Other Authors: Romeo, Giovanni
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2012
Subjects:
Online Access:http://amsdottorato.unibo.it/4797/
id ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-4797
record_format oai_dc
spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-47972014-11-20T04:54:04Z Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins Iosco, Carmela <1983> BIO/10 Biochimica Iodide transport is necessary for the synthesis of thyroid hormones following accumulation in the follicular lumen out of thyroid cells, via channels unknown with the exception of pendrin. According to our hypothesis, TMEM16A could be the main molecular identity of the channel mediating iodide efflux in the thyroid gland. TMEM16A is the prior candidate for calcium-activated chloride conductance (CaCC). TMEM16A belongs to the TMEM16/anoctamin family comprising ten members (TMEM16A-K). Higher affinity of TMEM16A for iodide and predicted expression in the thyroid gland suggest its mediation of iodide efflux. The aim of this project was to identify the role of TMEM16A in iodide transport in the thyroid gland, by characterizing its molecular expression and functional properties. We demonstrated that TMEM16F, H, K transcripts are expressed in FRTL-5 thyroid cells, as well as TMEM16A, which is TSH-independent. Tumor tissue from human thyroid maintains TMEM16A expression. Functional in vivo experiments in FRTL-5, stably expressing YFP-H148Q/I152L fluorescent protein as a biosensor, showed that iodide efflux is stimulated by agonists of purinergic receptors with an order of potency of ATP>UTP>ADP (compatible with an involvement of P2Y purinergic receptors), and by agonists of adrenergic receptors (epinephrine, norepinephrine and phenylephrine). Iodide efflux was blocked by α-receptor antagonists prazosin and phentolamine, consistent with a role of α1 adrenergic receptors. Iodide efflux was specifically dependent on calcium mobilized from intracellular compartments and induced by the calcium ionophore ionomycin. CaCC blockers suppressed ionomycin-/ATP-/epinephrine-stimulated iodide efflux. Heterologous expression of TMEM16A in CHO K1 cells induced calcium-activated iodide fluxes. All these results support the hypothesis of the involvement of TMEM16A in calcium-dependent iodide efflux induced by receptor agonists in thyroid cells. TMEM16A may represent a new pharmacological target for thyroid cancer therapy, since its blockade may enhance the retention of radioiodide by tumour cells enhancing the efficacy of radioablative therapy. Alma Mater Studiorum - Università di Bologna Romeo, Giovanni 2012-06-05 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/4797/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic BIO/10 Biochimica
spellingShingle BIO/10 Biochimica
Iosco, Carmela <1983>
Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
description Iodide transport is necessary for the synthesis of thyroid hormones following accumulation in the follicular lumen out of thyroid cells, via channels unknown with the exception of pendrin. According to our hypothesis, TMEM16A could be the main molecular identity of the channel mediating iodide efflux in the thyroid gland. TMEM16A is the prior candidate for calcium-activated chloride conductance (CaCC). TMEM16A belongs to the TMEM16/anoctamin family comprising ten members (TMEM16A-K). Higher affinity of TMEM16A for iodide and predicted expression in the thyroid gland suggest its mediation of iodide efflux. The aim of this project was to identify the role of TMEM16A in iodide transport in the thyroid gland, by characterizing its molecular expression and functional properties. We demonstrated that TMEM16F, H, K transcripts are expressed in FRTL-5 thyroid cells, as well as TMEM16A, which is TSH-independent. Tumor tissue from human thyroid maintains TMEM16A expression. Functional in vivo experiments in FRTL-5, stably expressing YFP-H148Q/I152L fluorescent protein as a biosensor, showed that iodide efflux is stimulated by agonists of purinergic receptors with an order of potency of ATP>UTP>ADP (compatible with an involvement of P2Y purinergic receptors), and by agonists of adrenergic receptors (epinephrine, norepinephrine and phenylephrine). Iodide efflux was blocked by α-receptor antagonists prazosin and phentolamine, consistent with a role of α1 adrenergic receptors. Iodide efflux was specifically dependent on calcium mobilized from intracellular compartments and induced by the calcium ionophore ionomycin. CaCC blockers suppressed ionomycin-/ATP-/epinephrine-stimulated iodide efflux. Heterologous expression of TMEM16A in CHO K1 cells induced calcium-activated iodide fluxes. All these results support the hypothesis of the involvement of TMEM16A in calcium-dependent iodide efflux induced by receptor agonists in thyroid cells. TMEM16A may represent a new pharmacological target for thyroid cancer therapy, since its blockade may enhance the retention of radioiodide by tumour cells enhancing the efficacy of radioablative therapy.
author2 Romeo, Giovanni
author_facet Romeo, Giovanni
Iosco, Carmela <1983>
author Iosco, Carmela <1983>
author_sort Iosco, Carmela <1983>
title Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
title_short Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
title_full Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
title_fullStr Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
title_full_unstemmed Characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
title_sort characterization of new molecular targets involved in iodide flux in the thyroid gland: the anoctamins
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2012
url http://amsdottorato.unibo.it/4797/
work_keys_str_mv AT ioscocarmela1983 characterizationofnewmoleculartargetsinvolvediniodidefluxinthethyroidglandtheanoctamins
_version_ 1716720132604035072