Circulation. Cardiovascular genetics
Authors: Yang Q, Köttgen A, Dehghan A, Smith AV, Glazer NL, Chen MH, Chasman DI, Aspelund T, Eiriksdottir G, Harris TB, Launer L, Nalls M, Hernandez D, Arking DE, Boerwinkle E, Grove ML, Li M, Linda Kao WH, Chonchol M, Haritunians T, Li G, Lumley T, Psaty BM, Shlipak M, Hwang SJ, Larson MG, O'Donnell CJ, Upadhyay A, van Duijn CM, Hofman A, Rivadeneira F, Stricker B, Uitterlinden AG, Paré G, Parker AN, Ridker PM, Siscovick DS, Gudnason V, Witteman JC, Fox CS, Coresh J
Cardiology
Authors: Cotter G, Voors AA, Weatherley BD, Pang PS, Teerlink JR, Filippatos G, Ponikowski P, Milo-Cotter O, Dittrich H, Teichman SL, Adams KF, Gheorghiade M, Metra M
Gastroenterology | Volume 139 of Issue 5
Authors: Terdiman JP, McQuaid KR
American journal of kidney diseases : the official journal of the National Kidney Foundation
Authors: Painter P, Krasnoff JB, Kuskowski M, Frassetto L, Johansen KL
Journal of the National Cancer Institute
Authors: Braithwaite D, Satariano WA, Sternfeld B, Hiatt RA, Ganz PA, Kerlikowske K, Moore DH, Slattery ML, Tammemagi M, Castillo A, Melisko M, Esserman L, Weltzien EK, Caan BJ
Naunyn-Schmiedeberg's archives of pharmacology
Authors: Jensen BC, Swigart PM, Montgomery MD, Simpson PC
Journal of general internal medicine
Authors: Dalrymple LS, Katz R, Kestenbaum B, Shlipak MG, Sarnak MJ, Stehman-Breen C, Seliger S, Siscovick D, Newman AB, Fried L
The Journal of biological chemistry | Volume 285 of Issue 47
Authors: Adapala NS, Barbe MF, Langdon WY, Nakamura MC, Tsygankov AY, Sanjay A
Cbl is an adaptor protein and an E3 ligase that plays both positive and negative roles in several signaling pathways that affect various cellular functions. Tyrosine 737 is unique to Cbl and is phosphorylated by Syk and Src family kinases. Phosphorylated Cbl Tyr(737) creates a binding site for the p85 regulatory subunit of PI3K, which also plays an important role in the regulation of bone resorption by osteoclasts. To investigate the role of Cbl-PI3K interaction in bone homeostasis, we examined the knock-in mice (Cbl(YF/YF)) in which the PI3K binding site in Cbl is ablated due to the mutation in the regulatory tyrosine. We report that in Cbl(YF/YF) mice, despite increased numbers of osteoclasts, bone volume is increased due to defective osteoclast function. Additionally, in ex vivo cultures, mature Cbl(YF/YF) osteoclasts showed an increased ability to survive in the presence of RANKL due to delayed onset of apoptosis. RANKL-mediated signaling is perturbed in Cbl(YF/YF) osteoclasts, and most interestingly, AKT phosphorylation is up-regulated, suggesting that the lack of PI3K sequestration by Cbl results in increased survival and decreased bone resorption. Cumulatively, these in vivo and in vitro results show that, on one hand, binding of Cbl to PI3K negatively regulates osteoclast differentiation, survival, and signaling events (e.g. AKT phosphorylation), whereas on the other hand it positively influences osteoclast function.
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The Journal of biological chemistry
Authors: Bourguignon LY, Wong G, Earle C, Krueger K, Spevak CC
Genes
Authors: Kido T, Hatakeyama S, Ohyama C, Lau YF