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Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport

Myosin 1A (Myo1a) is a mechanoenzyme previously thought to be located exclusively in the intestinal epithelium. It is the principle calmodulin-binding protein of the brush border. Based on earlier studies in chickens, we hypothesized that Myo1a facilitates calcium transport across the brush border m...

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Autores principales: Munson, Scott, Wang, Yongmei, Chang, Wenhan, Bikle, Daniel D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Endocrine Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6789431/
https://www.ncbi.nlm.nih.gov/pubmed/31620669
http://dx.doi.org/10.1210/js.2019-00171
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author Munson, Scott
Wang, Yongmei
Chang, Wenhan
Bikle, Daniel D
author_facet Munson, Scott
Wang, Yongmei
Chang, Wenhan
Bikle, Daniel D
author_sort Munson, Scott
collection PubMed
description Myosin 1A (Myo1a) is a mechanoenzyme previously thought to be located exclusively in the intestinal epithelium. It is the principle calmodulin-binding protein of the brush border. Based on earlier studies in chickens, we hypothesized that Myo1a facilitates calcium transport across the brush border membrane of the intestinal epithelium, perhaps in association with the calcium channel Trpv6. Working with C2Bbe1 cells, a human intestinal epithelial cell line, we observed that overexpression of Myo1a increased, whereas the antisense construct blocked calcium transport. To further test this hypothesis, we examined mice in which either or both Myo1a and Trpv6 had been deleted. Although the Trpv6-null mice had decreased intestinal calcium transport, the Myo1a-null mouse did not, disproving our original hypothesis, at least in mice. Expecting that a reduction in intestinal calcium transport would result in decreased bone, we examined the skeletons of these mice. To our surprise, we found no decrease in bone in the Trpv6-null mouse, but a substantial decrease in the Myo1a-null mouse. Double deletions were comparable to the Myo1a null. Moreover, Myo1a but not Trpv6 was expressed in osteoblasts. In vitro, the bone marrow stromal cells from the Myo1a-null mice showed normal numbers of colony-forming units but marked decrements in the formation of alkaline phosphatase–positive colonies and mineralized nodules. We conclude that Myo1a regulates osteoblast differentiation independent of its role, if any, in intestinal calcium transport, whereas Trpv6 functions primarily to promote intestinal calcium transport with little influence in osteoblast function.
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spelling pubmed-67894312019-10-16 Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport Munson, Scott Wang, Yongmei Chang, Wenhan Bikle, Daniel D J Endocr Soc Research Articles Myosin 1A (Myo1a) is a mechanoenzyme previously thought to be located exclusively in the intestinal epithelium. It is the principle calmodulin-binding protein of the brush border. Based on earlier studies in chickens, we hypothesized that Myo1a facilitates calcium transport across the brush border membrane of the intestinal epithelium, perhaps in association with the calcium channel Trpv6. Working with C2Bbe1 cells, a human intestinal epithelial cell line, we observed that overexpression of Myo1a increased, whereas the antisense construct blocked calcium transport. To further test this hypothesis, we examined mice in which either or both Myo1a and Trpv6 had been deleted. Although the Trpv6-null mice had decreased intestinal calcium transport, the Myo1a-null mouse did not, disproving our original hypothesis, at least in mice. Expecting that a reduction in intestinal calcium transport would result in decreased bone, we examined the skeletons of these mice. To our surprise, we found no decrease in bone in the Trpv6-null mouse, but a substantial decrease in the Myo1a-null mouse. Double deletions were comparable to the Myo1a null. Moreover, Myo1a but not Trpv6 was expressed in osteoblasts. In vitro, the bone marrow stromal cells from the Myo1a-null mice showed normal numbers of colony-forming units but marked decrements in the formation of alkaline phosphatase–positive colonies and mineralized nodules. We conclude that Myo1a regulates osteoblast differentiation independent of its role, if any, in intestinal calcium transport, whereas Trpv6 functions primarily to promote intestinal calcium transport with little influence in osteoblast function. Endocrine Society 2019-08-12 /pmc/articles/PMC6789431/ /pubmed/31620669 http://dx.doi.org/10.1210/js.2019-00171 Text en Copyright © 2019 Endocrine Society https://creativecommons.org/licenses/by-nc-nd/4.0/ This article has been published under the terms of the Creative Commons Attribution Non-Commercial, No-Derivatives License (CC BY-NC-ND; https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Articles
Munson, Scott
Wang, Yongmei
Chang, Wenhan
Bikle, Daniel D
Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title_full Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title_fullStr Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title_full_unstemmed Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title_short Myosin 1a Regulates Osteoblast Differentiation Independent of Intestinal Calcium Transport
title_sort myosin 1a regulates osteoblast differentiation independent of intestinal calcium transport
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6789431/
https://www.ncbi.nlm.nih.gov/pubmed/31620669
http://dx.doi.org/10.1210/js.2019-00171
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AT bikledanield myosin1aregulatesosteoblastdifferentiationindependentofintestinalcalciumtransport