bioRxiv
E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms
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Jolly, MK; Ware, K; Xu, S; Gilja, S; Shetler, S; Yang, Y; Wang, X; Austin, G; Runyambo, D; Hish, A; Bartholf DeWitt, S; George, J; Kreulen, T ...
2018
Duke Scholars
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Jolly, M. K., Ware, K., Xu, S., Gilja, S., Shetler, S., Yang, Y., … Somarelli, J. (2018). E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms. bioRxiv. https://doi.org/10.1101/347815
Jolly, Mohit Kumar, Kathryn Ware, Shengnan Xu, Shivee Gilja, Samantha Shetler, Yanjun Yang, Xueyang Wang, et al. “E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms.” BioRxiv, 2018. https://doi.org/10.1101/347815.
Jolly MK, Ware K, Xu S, Gilja S, Shetler S, Yang Y, et al. E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms. bioRxiv. 2018.
Jolly, Mohit Kumar, et al. “E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms.” BioRxiv, 2018. Epmc, doi:10.1101/347815.
Jolly MK, Ware K, Xu S, Gilja S, Shetler S, Yang Y, Wang X, Austin G, Runyambo D, Hish A, Bartholf DeWitt S, George J, Kreulen T, Boss M-K, Lazarides A, Kerr D, Gerber D, Sivaraj D, Armstrong A, Dewhirst M, Eward W, Levine H, Somarelli J. E-cadherin represses anchorage-independent growth in sarcomas through both signaling and mechanical mechanisms. bioRxiv. 2018.