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SH2B1β regulates N-cadherin levels, cell-cell adhesion and nerve growth factor-induced neurite initiation
Journal article   Open access   Peer reviewed

SH2B1β regulates N-cadherin levels, cell-cell adhesion and nerve growth factor-induced neurite initiation

Tien-Cheng Wang, Yi-Hsuan Li, Kuan-Wei Chen, Ching-Jen Chen, Chia-Ling Wu, Nan-Yuan Teng and Linyi Chen
Journal of Cellular Physiology, Vol.226(8), pp.2063-2074
08/2011

Abstract

Little is known regarding the role of inter-cellular interaction during neuronal differentiation. Homophilic N-cadherin engagement between cells contributes to neuronal migration. However, its function in neurite initiation is not clear. In this study, we provide the first evidence that the adaptor protein SH2B1β regulated N-cadherin levels and neurite initiation. Overexpression of SH2B1β reduces N-cadherin levels and increased phosphotyrosine 654 β-catenin, leading to increased nerve growth factor-induced neurite initiation in PC12 cells, an established model for neuronal differentiation. In contrast, overexpression of the dominant-negative mutant SH2B1β(R555E) increases N-cadherin expression, cell-cell aggregation, and reduces neurite initiation. Moreover, SH2B1β binds directly or indirectly to N-cadherin indicative of its involvement in regulating the levels of N-cadherin. Taken together, these findings provide significant new insights into how N-cadherin-mediated inter-cellular interactions may influence neurite initiation and how SH2B1β may regulate these processes. © 2010 Wiley-Liss, Inc..
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