Zobrazeno 1 - 10
of 25
pro vyhledávání: '"PUMA (p53 upregulated modulator of apoptosis)"'
Autor:
Daniel E. Kennedy II, Perceus Mody, Jean-Francois Gout, Wei Tan, Keun Seok Seo, Alicia K. Olivier, Jason W. Rosch, Justin A. Thornton
Publikováno v:
Frontiers in Cellular and Infection Microbiology, Vol 12 (2022)
Apoptosis of cells at the site of infection is a requirement for shutdown of inflammatory signaling, avoiding tissue damage, and preventing progression of sepsis. Puma+/+ and Puma-/- mice were challenged with TIGR4 strain pneumococcus and cytokines w
Externí odkaz:
https://doaj.org/article/393bb0a9aa2c4a2980f87ebaa51cbb8e
Akademický článek
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Autor:
Vennu Narendar, Philippe Juin, A. K. D. Bhavani, Rémy Le Guével, Fabien Gautier, Appala Venkata Ramana Murthy, Nicolas Levoin, Nangunoori Sampath Kumar, René Grée, Chada Raji Reddy, Paul Mosset, Hélène Solhi, Pasula Aparna, Julie Roul
Publikováno v:
Bioorganic & Medicinal Chemistry Letters
Bioorganic & Medicinal Chemistry Letters, 2021, 52, pp.128390. ⟨10.1016/j.bmcl.2021.128390⟩
Bioorganic & Medicinal Chemistry Letters, 2021, 52, pp.128390. ⟨10.1016/j.bmcl.2021.128390⟩
International audience; A small library of new piperidine-triazole hybrids with 3-aryl isoxazole side chains has been designed and synthesized. Their cytotoxicity against a panel of seven cancer cell lines has been established. For the most promising
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ae63b759b6b3265e31ade8013c76432d
https://hal.archives-ouvertes.fr/hal-03414697/document
https://hal.archives-ouvertes.fr/hal-03414697/document
FBXL20 promotes breast cancer malignancy by inhibiting apoptosis through degradation of PUMA and BAX
Autor:
Sunil K. Malonia, Asha Patel, Manas Kumar Santra, Sarathkumar Edachery, Shahid Banday, Yashika Agrawal, Praveenkumar Shetty, Avinash Kumar, Rajesh Kumar Manne
Publikováno v:
The Journal of Biological Chemistry
Apoptosis is a programmed cell death that efficiently removes damaged cells to maintain tissue homeostasis. Defect in apoptotic machinery can lead to tumor development, progression, and resistance to chemotherapy. PUMA (p53 upregulated modulator of a
Akademický článek
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Akademický článek
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Autor:
Yanghua Qin, Feng Ma, Fan Zhang, Jingfei Zhu, Lifen Xie, Sudan He, Dapei Li, Zigang Qiao, Liang Li, Fangrong Shen, Shengchuan Chen, Sanyue Mai, Haiping Yao
Publikováno v:
The Journal of Biological Chemistry
Interferon-γ-inducible factor 16 (IFI16) triggers stimulator of interferon (IFN) genes (STING)-dependent type I IFN production during host antiviral immunity and facilitates p53-dependent apoptosis during suppressing tumorigenesis. We have previousl
Autor:
Lingxia Zhu, Peng Cao, Yonghua Zhu, Jiao Chen, Rafael Rosell, Yuhan Yang, Chunping Hu, Xiaoyan Sun, Xueting Cai, Jiayu Zhao, Yang Yang, Jiaqi Wang
Publikováno v:
Acta Pharmaceutica Sinica. B
Acta Pharmaceutica Sinica B, Vol 10, Iss 4, Pp 603-614 (2020)
Acta Pharmaceutica Sinica B, Vol 10, Iss 4, Pp 603-614 (2020)
Pancreatic cancer is one of the most aggressive cancers with poor prognosis and a low 5-year survival rate. The family of P21-activated kinases (PAKs) appears to modulate many signaling pathways that contribute to pancreatic carcinogenesis. In this w
Autor:
Mollereau, B., Rzechorzek, N. M., Roussel, B. D., Sedru, M., Brink, D., Bailly-Maitre, B., Palladino, F., Medinas, D. B., Domingos, P. M., Hunot, S., Chandran, S., Birman, S., Baron, T., Vivien, D., Duarte, C. B., Ryoo, H. D., Steller, H., Urano, F., Chevet, E., Kroemer, G., Ciechanover, A., Calabrese, E. J., Kaufman, R. J., Hetz, C
Publikováno v:
Brain Research
Brain Research, Elsevier, 2016, 1648 (B), pp.603-616. 〈10.1016/j.brainres.2016.02.033〉
Brain Research, Elsevier, 2016, 1648 (B), pp.603-616. ⟨10.1016/j.brainres.2016.02.033⟩
Mollereau, B, Rzechorzek, N M, Roussel, BD, Sedru, M, Van denBrink, D, Bailly-Maitre, B, Palladino, F, Medinas, DB, Domingos, PM, Hunot, S, Chandran, S, Birman, S, Baron, T, Vivien, D, Duarte, CB, Ryoo, HD, Steller, H, Urano, F, Chevet, E, Kroemer, G, Ciechanover, A, Calabrese, EJ, Kaufman, RJ & Hetz, C 2016, ' Adaptive preconditioning in neurological diseases- therapeutic insights from proteostatic perturbations ', Brain Research . https://doi.org/10.1016/j.brainres.2016.02.033
Brain Research, Elsevier, 2016, 1648 (B), pp.603-616. 〈10.1016/j.brainres.2016.02.033〉
Brain Research, Elsevier, 2016, 1648 (B), pp.603-616. ⟨10.1016/j.brainres.2016.02.033⟩
Mollereau, B, Rzechorzek, N M, Roussel, BD, Sedru, M, Van denBrink, D, Bailly-Maitre, B, Palladino, F, Medinas, DB, Domingos, PM, Hunot, S, Chandran, S, Birman, S, Baron, T, Vivien, D, Duarte, CB, Ryoo, HD, Steller, H, Urano, F, Chevet, E, Kroemer, G, Ciechanover, A, Calabrese, EJ, Kaufman, RJ & Hetz, C 2016, ' Adaptive preconditioning in neurological diseases- therapeutic insights from proteostatic perturbations ', Brain Research . https://doi.org/10.1016/j.brainres.2016.02.033
In neurological disorders, both acute and chronic neural stress can disrupt cellular proteostasis, resulting in the generation of pathological protein. However in most cases, neurons adapt to these proteostatic perturbations by activating a range of
Autor:
Xuping Li, Matthew D. Cykowski, Stephen T. C. Wong, Tiancheng He, Weiming Xia, Lin Wang, Joshua Chakranarayan, Suzanne Zein-Eldin Powell, Timothy Liu, Hong Zhao, Andreana L. Rivera
Publikováno v:
EBioMedicine
EBioMedicine, Vol 51, Iss, Pp-(2020)
EBioMedicine, Vol 51, Iss, Pp-(2020)
Background: Hyperamyloidosis in the brain is known as the earliest neuropathological change and a unique etiological factor in Alzheimer's disease (AD), while progressive neurodegeneration in certain vulnerable brain regions forms the basis of clinic