Triptolide inhibits Hsp90β atpase and chaperone activity to promote cell cycle arrest and programmed cell death through multiple regulations

2015 ◽  
Author(s):  
Zhehao Zhang
2019 ◽  
Vol 35 (2) ◽  
pp. 167-179 ◽  
Author(s):  
Teeranai Ittiudomrak ◽  
Songchan Puthong ◽  
Sittiruk Roytrakul ◽  
Chanpen Chanchao

Blood ◽  
2005 ◽  
Vol 106 (11) ◽  
pp. 4301-4301
Author(s):  
Yuko Mishima ◽  
Yasuhito Terui ◽  
Yuji Mishima ◽  
Toshihiro Takizawa ◽  
Shinya Kimura ◽  
...  

Abstract Back ground; Accumulating evidence suggests that programmed cell death is not defined as apoptosis but cells use different pathways for active self-destruction as reflected by different morphology. Autophagic cell death (APCD), which also be designated type II programmed cell death and appears to be a phylogenetically old phenomenon, is observed in physiological and disease state. Indeed, APCD is observed in several neurodegenerative diseases and cancer cells, however, the APCD in leukemic cells has not been reported yet. Here, we found APCD was occurred in bcr-abl-expressing CML cell lines. Methods; Bcr-abl-positive cell line, K562, were cultured with 2nM of TPA up to 48hours. Subsequently, we examined the morphological change by light microscopy and electronmicroscopy. To evaluate the APCD, TPA-treated K562 cells were labeled with autofluorescent agent Monodansylcadaverin(MDC), which specifically accumulates in autophagosomes and we measured accumulation of autophagosmes in cytoplasm by fluorescent microplate reader. TPA continuous activated MAPK of K562 cells and induced cell cycle arrest in G0/G1 phase. In order to elucidate the role of activation of MAPK in APCD, MAPK in K562 cells were inactivated by MAPK inhibitor, U0126 or dominant negative MAPK-transfection, and then, the cells were treated with TPA. Furthermore, to evaluate the involvement of cell cycle arrest in APCD, bcr-abl-transfected murine leukemic cell line, BAF3, was treated with cell cycle arrest inducer, mimosine. In addition, we investigated the expression of an autophagy-related molecule, Beclin 1 by immunohistochemical analysis. Result; The 48 hours’ treatment with TPA induced cell death in K562 cells, which accumulated plenty of autophagosomes in cytoplasm. MDC labeling assay revealed that accumulation of autophagosomes were increased in time- and dose-dependent manner. On the other hand, MAPK-inactivated K562 cells exhibited resistance to TPA-induced APCD. Furthermore, the bcr-abl-transfected BAF3 cells exhibited continuous activation of MAPK and underwent APCD by cell cycle arrest by mimosine. Immunohistochemical analysis revealed that Beclin 1 shuttled between nuclear and cytoplasms and co-localized with MAPK during APCD progression. Conclusion: APCD in bcr-abl-positive leukemia cells were closely involved in G0/G1 cell cycle arrest and continuous activation of MAPK. These findings are useful in developing the novel strategy to treatment of Ph1 positive leukemia via alternative pathways and another type of cell death.


2021 ◽  
Vol 12 (8) ◽  
Author(s):  
Viktorija Juric ◽  
Lance Hudson ◽  
Joanna Fay ◽  
Cathy E. Richards ◽  
Hanne Jahns ◽  
...  

AbstractActivation of cyclin-dependent kinases (CDKs) contributes to the uncontrolled proliferation of tumour cells. Genomic alterations that lead to the constitutive activation or overexpression of CDKs can support tumourigenesis including glioblastoma (GBM), the most common and aggressive primary brain tumour in adults. The incurability of GBM highlights the need to discover novel and more effective treatment options. Since CDKs 2, 7 and 9 were found to be overexpressed in GBM, we tested the therapeutic efficacy of two CDK inhibitors (CKIs) (CYC065 and THZ1) in a heterogeneous panel of GBM patient-derived cell lines (PDCLs) cultured as gliomaspheres, as preclinically relevant models. CYC065 and THZ1 treatments suppressed invasion and induced viability loss in the majority of gliomaspheres, irrespective of the mutational background of the GBM cases, but spared primary cortical neurons. Viability loss arose from G2/M cell cycle arrest following treatment and subsequent induction of apoptotic cell death. Treatment efficacies and treatment durations required to induce cell death were associated with proliferation velocities, and apoptosis induction correlated with complete abolishment of Mcl-1 expression, a cell cycle-regulated antiapoptotic Bcl-2 family member. GBM models generally appeared highly dependent on Mcl-1 expression for cell survival, as demonstrated by pharmacological Mcl-1 inhibition or depletion of Mcl-1 expression. Further analyses identified CKI-induced Mcl-1 loss as a prerequisite to establish conditions at which the BH3-only protein Bim can efficiently induce apoptosis, with cellular Bim amounts strongly correlating with treatment efficacy. CKIs reduced proliferation and promoted apoptosis also in chick embryo xenograft models of primary and recurrent GBM. Collectively, these studies highlight the potential of these novel CKIs to suppress growth and induce cell death of patient-derived GBM cultures in vitro and in vivo, warranting further clinical investigation.


2022 ◽  
Author(s):  
Selvaraj Shyamsivappan ◽  
Raju Vivek ◽  
Thangaraj Suresh ◽  
Palanivel Naveen ◽  
Kaviyarasu Adhigaman ◽  
...  

A progression of new N-(3'-acetyl-8-nitro-2,3-dihydro-1H,3'H-spiro[quinoline-4,2'-[1,3,4]thiadiazol]-5'-yl) acetamide derivatives were synthesized from potent 8-nitro quinoline-thiosemicarbazones. The synthesized compounds were characterized by different spectroscopic studies and single X-ray crystallographic studies. The compounds were...


2008 ◽  
Vol 104 (5) ◽  
pp. 1937-1945 ◽  
Author(s):  
Avudaiappan Maran ◽  
Kristen L. Shogren ◽  
Michaela Benedikt ◽  
Gobinda Sarkar ◽  
Russell T. Turner ◽  
...  

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