Serum- and Glucocorticoid-Regulated Kinase 1 Regulates Ubiquitin Ligase Neural Precursor Cell-Expressed, Developmentally Down-Regulated Protein 4-2 by Inducing Interaction with 14-3-3

2005 ◽  
Vol 19 (12) ◽  
pp. 3073-3084 ◽  
Author(s):  
Vivek Bhalla ◽  
Dorothée Daidié ◽  
Hongyan Li ◽  
Alan C. Pao ◽  
Lila P. LaGrange ◽  
...  
2016 ◽  
Vol 473 (3) ◽  
pp. 267-276 ◽  
Author(s):  
Robert D'Cruz ◽  
Pamela J. Plant ◽  
Lesley A. Pablo ◽  
Shouzhe Lin ◽  
Joshua Chackowicz ◽  
...  

Nedd4-1 (neural precursor cell-expressed developmentally down-regulated 4-1) mediates skeletal muscle atrophy. We identify PDLIM7 as a novel Nedd4-1 substrate, binding Nedd4-1 WW domains via its PY motif and co-localizing with Nedd4-1 in myotubes. The interaction results in PDLIM7 ubiquitination and may underlie Nedd4-1-mediated muscle wasting.


2021 ◽  
Vol 11 ◽  
Author(s):  
Shangdan Xie ◽  
Lu Xia ◽  
Yizuo Song ◽  
Hejing Liu ◽  
Zhi-wei Wang ◽  
...  

Neural precursor cell expressed developmentally downregulated 4-like (NEDD4L) is an E3 ubiquitin ligase that has been reported to participate in multiple cellular procedures by regulating of substrate ubiquitination and subsequent protein degradation. A great amount of evidence has demonstrated that NEDD4L mainly functions as a tumor suppressor in most cancer types, while it also acts as an oncogene in a few cancers. In this review, we summarize the potential role of NEDD4L in carcinogenesis and the related underlying molecular mechanism to improve our understanding of its functions in the tumorigenesis of human malignancies. Developing clinical drugs targeting NEDD4L could be a potential therapeutic strategy for cancer therapy in the future.


2009 ◽  
Vol 419 (1) ◽  
pp. 57-63 ◽  
Author(s):  
Pamela J. Plant ◽  
Judy Correa ◽  
Neil Goldenberg ◽  
James Bain ◽  
Jane Batt

The inositol phosphatase, MTMR4 (myotubularin-related protein 4), was identified as a novel interactor of the ubiquitin ligase Nedd4 (neural-precursor-cell-expressed developmentally down-regulated 4). hMTMR4 (human MTMR4) and Nedd4 co-immunoprecipitated and co-localized to late endosomes. The PY (Pro-Tyr) motif of hMTMR4 binds to WW (Trp-Trp) domains of hNedd4. MTMR4 expression was decreased in atrophying muscle, whereas Nedd4 expression was increased and hMTMR4 was ubiquitinated by hNedd4, suggesting that this novel interaction may underlie the biological process of muscle breakdown.


2011 ◽  
Vol 6 (3) ◽  
pp. 229-254 ◽  
Author(s):  
Behnam A. Baghbaderani ◽  
Karim Mukhida ◽  
Murray Hong ◽  
Ivar Mendez ◽  
Leo A. Behie

2017 ◽  
Vol 64 (2) ◽  
pp. 287-299 ◽  
Author(s):  
Ciqing Yang ◽  
Xiaoying Li ◽  
Qiuling Li ◽  
Han Li ◽  
Liang Qiao ◽  
...  

2007 ◽  
Vol 1159 ◽  
pp. 67-76 ◽  
Author(s):  
Joseph C. Lim ◽  
Adam J. Wolpaw ◽  
Maeve A. Caldwell ◽  
Stephen B. Hladky ◽  
Margery A. Barrand

Author(s):  
Behnam A. Baghbaderani ◽  
Arindom Sen ◽  
Michael S. Kallos ◽  
Leo A. Behie

Author(s):  
Robert T. Flemmer ◽  
Sarah P. Connolly ◽  
Brittany A. Geizer ◽  
Joseph T. Opferman ◽  
Jacqueline L. Vanderluit

Myeloid cell leukemia-1 (Mcl-1), an anti-apoptotic Bcl-2 protein, regulates neural precursor cell (NPC) survival in both the developing and adult mammalian nervous system. It is unclear when during the neurogenic period Mcl-1 becomes necessary for NPC survival and whether Bax is the sole pro-apoptotic target of Mcl-1. To address these questions, we used the nervous system-specific Nestin-Cre Mcl-1 conditional knockout mouse line (Mcl-1 CKO) to assess the anti-apoptotic role of Mcl-1 in developmental neurogenesis. Loss of Mcl-1 resulted in a wave of apoptosis beginning in the brainstem and cervical spinal cord at embryonic day 9.5 (E9.5) and in the forebrain at E10.5. Apoptosis was first observed ventrally in each region and spread dorsally over time. Within the spinal cord, apoptosis also spread in a rostral to caudal direction following the path of differentiation. Breeding the Mcl-1 CKO mouse with the Bax null mouse rescued the majority of NPC from apoptosis except in the dorsomedial brainstem and ventral thoracic spinal cord where only 50% were rescued. This demonstrates that Mcl-1 promotes NPC survival primarily by inhibiting the activation of Bax, but that Bax is not the sole pro-apoptotic target of Mcl-1 during embryonic neurogenesis. Interestingly, although co-deletion of Bax rescued the majority of NPC apoptosis, it resulted in embryonic lethality at E13, whereas conditional deletion of both Mcl-1 and Bax rescued embryonic lethality. In summary, this study demonstrates the widespread dependency on Mcl-1 during nervous system development.


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