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Dale W Laird

Showing results (101-110 of 136) with videos related to

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Disease Models & Mechanisms|March 5, 2009
Oogenesis defects in a mutant mouse model of oculodentodigital dysplasiaDan Tong, Deanne Colley, Renee Thoo, et al.
Biology of Reproduction|January 30, 2009
A dominant loss-of-function GJA1 (Cx43) mutant impairs parturition in the mouseDan Tong, Xuerong Lu, Hong-Xing Wang, et al.
Elife|October 14, 2020
Single-cell dynamics of pannexin-1-facilitated programmed ATP loss during apoptosisHiromi Imamura, Shuichiro Sakamoto, Tomoki Yoshida, et al.
Bone|April 23, 2020
Effects of reduced connexin43 function on skull development in the Cx43<sup>I130T/+</sup> mutant mouse that models oculodentodigital dysplasiaSommer E Jarvis, Jae Eun Lee, Elizabeth Jewlal, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|September 15, 2011
Pannexin 3 is a novel target for Runx2, expressed by osteoblasts and mature growth plate chondrocytesStephen R Bond, Alice Lau, Silvia Penuela, et al.
Molecular Biology of the Cell|May 27, 2016
Specific functional pathologies of Cx43 mutations associated with oculodentodigital dysplasiaJohn J Kelly, Jessica L Esseltine, Qing Shao, et al.
The Journal of Biological Chemistry|June 4, 2002
Retroviral delivery of connexin genes to human breast tumor cells inhibits in vivo tumor growth by a mechanism that is independent of significant gap junctional intercellular communicationHong Qin, Qing Shao, Heather Curtis, et al.
The Journal of Biological Chemistry|July 4, 2012
Loss of pannexin 1 attenuates melanoma progression by reversion to a melanocytic phenotypeSilvia Penuela, Laszlo Gyenis, Amber Ablack, et al.
Cell Communication & Adhesion|March 15, 2006
Functional characterization of oculodentodigital dysplasia-associated Cx43 mutantsElizabeth McLachlan, Janet L Manias, Xiang-Qun Gong, et al.
The Prostate|May 3, 2006
A histone deacetylation-dependent mechanism for transcriptional repression of the gap junction gene cx43 in prostate cancer cellsMaite Hernandez, Qing Shao, Xiang-Jiao Yang, et al.
Pageof 14

Showing results (101-110 of 136) with videos related to

Sort By:
Pageof 14
Disease Models & Mechanisms|March 5, 2009
Oogenesis defects in a mutant mouse model of oculodentodigital dysplasiaDan Tong, Deanne Colley, Renee Thoo, et al.
Biology of Reproduction|January 30, 2009
A dominant loss-of-function GJA1 (Cx43) mutant impairs parturition in the mouseDan Tong, Xuerong Lu, Hong-Xing Wang, et al.
Elife|October 14, 2020
Single-cell dynamics of pannexin-1-facilitated programmed ATP loss during apoptosisHiromi Imamura, Shuichiro Sakamoto, Tomoki Yoshida, et al.
Bone|April 23, 2020
Effects of reduced connexin43 function on skull development in the Cx43<sup>I130T/+</sup> mutant mouse that models oculodentodigital dysplasiaSommer E Jarvis, Jae Eun Lee, Elizabeth Jewlal, et al.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|September 15, 2011
Pannexin 3 is a novel target for Runx2, expressed by osteoblasts and mature growth plate chondrocytesStephen R Bond, Alice Lau, Silvia Penuela, et al.
Molecular Biology of the Cell|May 27, 2016
Specific functional pathologies of Cx43 mutations associated with oculodentodigital dysplasiaJohn J Kelly, Jessica L Esseltine, Qing Shao, et al.
The Journal of Biological Chemistry|June 4, 2002
Retroviral delivery of connexin genes to human breast tumor cells inhibits in vivo tumor growth by a mechanism that is independent of significant gap junctional intercellular communicationHong Qin, Qing Shao, Heather Curtis, et al.
The Journal of Biological Chemistry|July 4, 2012
Loss of pannexin 1 attenuates melanoma progression by reversion to a melanocytic phenotypeSilvia Penuela, Laszlo Gyenis, Amber Ablack, et al.
Cell Communication & Adhesion|March 15, 2006
Functional characterization of oculodentodigital dysplasia-associated Cx43 mutantsElizabeth McLachlan, Janet L Manias, Xiang-Qun Gong, et al.
The Prostate|May 3, 2006
A histone deacetylation-dependent mechanism for transcriptional repression of the gap junction gene cx43 in prostate cancer cellsMaite Hernandez, Qing Shao, Xiang-Jiao Yang, et al.
Pageof 14