Delta-Catenin Induced Dendritic Morphogenesis: An Essential Role of p190RhoGEF Interaction through Akt1 Mediated Phosphorylation
Author
Kim, Hangun; Han, Jeong-Ran; Park, Jaejun; Oh, Minsoo; James, Sarah E.; Chang, Sunghoe; Lu, Qun; Lee, Kwang Youl; Ki, Hyunkyoung; Song, Woo-Joo; Kwonseop, Kim
Abstract
delta-Catenin was first identified through its interaction with Presenilin-1 and has been implicated in the regulation of dendrogenesis and cognitive function. However, the molecular mechanisms by which delta-catenin promotes dendritic morphogenesis were unclear. In this study, we demonstrated delta-catenin interaction with p190RhoGEF, and the importance of Akt1-mediated phosphorylation at Thr-454 residue of delta -catenin in this interaction. We have also found that delta-catenin overexpression decreased the binding between p190RhoGEF and RhoA, and significantly lowered the levels of GTP-RhoA but not those of GTP-Rac1 and -Cdc42. delta-Catenin T454A, a defective form in p190RhoGEF binding, did not decrease the binding between p190RhoGEF and RhoA. delta-Catenin T454A also did not lower GTP-RhoA levels and failed to induce dendrite-like process formation in NIH 3T3 fibroblasts. Furthermore, delta-catenin T454A significantly reduced the length and number of mature mushroom shaped spines in primary hippocampal neurons. These results highlight signaling events in the regulation of delta-catenin-induced dendrogenesis and spine morphogenesis. Originally published Journal of Biological Chemistry, Vol. 283, No. 2, Jan 2008
Date
2008-01-11
Citation:
APA:
Kim, Hangun, & Han, Jeong-Ran, & Park, Jaejun, & Oh, Minsoo, & James, Sarah E., & Chang, Sunghoe, & Lu, Qun, & Lee, Kwang Youl, & Ki, Hyunkyoung, & Song, Woo-Joo, & Kwonseop, Kim. (January 2008).
Delta-Catenin Induced Dendritic Morphogenesis: An Essential Role of p190RhoGEF Interaction through Akt1 Mediated Phosphorylation.
Journal of Biological Chemistry,
283(2),
977-
987. Retrieved from
http://hdl.handle.net/10342/3320
MLA:
Kim, Hangun, and Han, Jeong-Ran, and Park, Jaejun, and Oh, Minsoo, and James, Sarah E., and Chang, Sunghoe, and Lu, Qun, and Lee, Kwang Youl, and Ki, Hyunkyoung, and Song, Woo-Joo, and Kwonseop, Kim.
"Delta-Catenin Induced Dendritic Morphogenesis: An Essential Role of p190RhoGEF Interaction through Akt1 Mediated Phosphorylation". Journal of Biological Chemistry.
283:2. (977-987),
January 2008.
December 10, 2023.
http://hdl.handle.net/10342/3320.
Chicago:
Kim, Hangun and Han, Jeong-Ran and Park, Jaejun and Oh, Minsoo and James, Sarah E. and Chang, Sunghoe and Lu, Qun and Lee, Kwang Youl and Ki, Hyunkyoung and Song, Woo-Joo and Kwonseop, Kim,
"Delta-Catenin Induced Dendritic Morphogenesis: An Essential Role of p190RhoGEF Interaction through Akt1 Mediated Phosphorylation," Journal of Biological Chemistry 283, no.
2 (January 2008),
http://hdl.handle.net/10342/3320 (accessed
December 10, 2023).
AMA:
Kim, Hangun, Han, Jeong-Ran, Park, Jaejun, Oh, Minsoo, James, Sarah E., Chang, Sunghoe, Lu, Qun, Lee, Kwang Youl, Ki, Hyunkyoung, Song, Woo-Joo, Kwonseop, Kim.
Delta-Catenin Induced Dendritic Morphogenesis: An Essential Role of p190RhoGEF Interaction through Akt1 Mediated Phosphorylation. Journal of Biological Chemistry.
January 2008;
283(2):
977-987.
http://hdl.handle.net/10342/3320. Accessed
December 10, 2023.
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Publisher
East Carolina University