scholarly journals Protein Phosphatase 6 Controls BCR-Induced Apoptosis of WEHI-231 Cells by Regulating Ubiquitination of Bcl-xL

2014 ◽  
Vol 192 (12) ◽  
pp. 5720-5729 ◽  
Author(s):  
Ryutaro Kajihara ◽  
Hitomi Sakamoto ◽  
Kano Tanabe ◽  
Kazuki Takemoto ◽  
Masayoshi Tasaki ◽  
...  
1995 ◽  
Vol 25 (5) ◽  
pp. 1352-1357 ◽  
Author(s):  
Michael S. K. Choi ◽  
Lawrence H. Boise ◽  
Alexander R. Gottschalk ◽  
José Quintans ◽  
Craig B. Thompson ◽  
...  

1999 ◽  
Vol 36 (6) ◽  
pp. 349-359 ◽  
Author(s):  
J Jongstra-Bilen ◽  
A Wielowieyski ◽  
V Misener ◽  
J Jongstra

1997 ◽  
Vol 272 (15) ◽  
pp. 9868-9876 ◽  
Author(s):  
Douglas A. Wiesner ◽  
John P. Kilkus ◽  
Alexander R. Gottschalk ◽  
José Quintáns ◽  
Glyn Dawson
Keyword(s):  
Wehi 231 ◽  

1996 ◽  
Vol 16 (9) ◽  
pp. 5015-5025 ◽  
Author(s):  
M Wu ◽  
M Arsura ◽  
R E Bellas ◽  
M J FitzGerald ◽  
H Lee ◽  
...  

Treatment of WEHI 231 immature B-lymphoma cells with an antibody against their surface immunoglobulin (anti-Ig) induces apoptosis and has been studied extensively as a model of B-cell tolerance. Anti-Ig treatment of exponentially growing WEHI 231 cells results in an early transient increase in c-myc expression that is followed by a decline to below basal levels; this decrease in c-myc expression immediately precedes the induction of cell death. Here we have modulated NF-kappaB/Rel factor activity, which regulates the rate of c-myc gene transcription, to determine whether the increase or decrease in c-Myc-levels mediates apoptosis in WEHI 231 cells. Addition of the serine/threonine protease inhibitor N-tosyl-L-phenylalanine chloromethyl ketone (TPCK), which blocks the normally rapid turnover of the specific inhibitor of NF-kappaB/Rel IkappaBalpha in these cells, caused a drop in Rel-related factor binding. TPCK treatment resulted in decreased c-myc expression, preventing the usual increase seen following anti-Ig treatment. Whereas inhibition of the induction of c-myc expression mediated by anti-Ig failed to block apoptosis, reduction of c-myc expression in exponentially growing WEHI 231 cells induced apoptosis even in the absence of anti-Ig treatment. In WEHI 231 clones ectopically expressing c-Myc, apoptosis induced by treatment with TPCK or anti-Ig was significantly diminished and cells continued to proliferate. Furthermore, apoptosis of WEHI 231 cells ensued following enhanced expression of Mad1, which has been found to reduce functional c-Myc levels. These results indicate that the decline in c-myc expression resulting from the drop in NF-kappaB/Rel binding leads to activation of apoptosis of WEHI 231 B cells.


2015 ◽  
Vol 2015 ◽  
pp. 1-8 ◽  
Author(s):  
Chong-xin Huang ◽  
Bo Lv ◽  
Yue Wang

Osteoporosis is one of the most common bone diseases, which is characterized by a systemic impairment of bone mass and fragility fractures. Age-related oxidative stress is highly associated with impaired osteoblastic dysfunctions and subsequent osteoporosis. In osteoblasts (bone formation cells), reactive oxygen species (ROS) are continuously generated and further cause lipid peroxidation, protein damage, and DNA lesions, leading to osteoblastic dysfunctions, dysdifferentiations, and apoptosis. Although much progress has been made, the mechanism responsible for oxidative stress induced cellular alternations and osteoblastic toxicity is still not fully elucidated. Here, we demonstrate that protein phosphatase 2A (PP2A), a major protein phosphatase in mammalian cells, mediates oxidative stress induced apoptosis in osteoblasts. Our results showed that lipid peroxidation products (4-HNE) may induce dramatic oxidative stress, inflammatory reactions, and apoptosis in osteoblasts. These oxidative stress responses may ectopically activate PP2A phosphatase activity, which may be mediated by inactivation of AKT/mTOR pathway. Moreover, inhibition of PP2A activity by okadaic acid might partly prevent osteoblastic apoptosis under oxidative conditions. These findings may reveal a novel mechanism to clarify the role of oxidative stress for osteoblastic apoptosis and provide new possibilities for the treatment of related bone diseases, such as osteoporosis.


Haematologica ◽  
2012 ◽  
Vol 98 (5) ◽  
pp. 729-738 ◽  
Author(s):  
C.-Y. Liu ◽  
C.-W. Shiau ◽  
H.-Y. Kuo ◽  
H.-P. Huang ◽  
M.-H. Chen ◽  
...  

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