Bilaketaren emaitzak - Tzu‐Ching Meng
- Erakusten 1 - 16 emaitzak -- 16
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Reversible Oxidation and Inactivation of Protein Tyrosine Phosphatases In Vivo nork Tzu‐Ching Meng, Toshiyuki Fukada, Nicholas K. Tonks
Argitaratua 2002Artigo -
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Active-site cysteine 215 sulfonation targets protein tyrosine phosphatase PTP1B for Cullin1 E3 ligase-mediated degradation nork Chunyi Yang, Chiu-Fen Yang, Xiaofang Tang, Luciana E. S. F. Machado, Jai Prakash Singh, Wolfgang Peti, Chien‐Sheng Chen, Tzu‐Ching Meng
Argitaratua 2022Artigo -
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Mass Spectrometry-Based Quantitative Proteomics for Dissecting Multiplexed Redox Cysteine Modifications in Nitric Oxide-Protected Cardiomyocyte Under Hypoxia nork Kuan‐Ting Pan, Yiyun Chen, Tsung-Hsien Pu, Yu-Shu Chao, Chun-Yi Yang, Ryan Bomgarden, John C. Rogers, Tzu‐Ching Meng, Kay‐Hooi Khoo
Argitaratua 2013Artigo -
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Ovatodiolide suppresses colon tumorigenesis and prevents polarization of M2 tumor-associated macrophages through YAP oncogenic pathways nork Yan‐Jiun Huang, Ching-Kuo Yang, Po‐Li Wei, Thanh-Tuan Huynh, Jacqueline Whang‐Peng, Tzu‐Ching Meng, Michael Hsiao, Yew-Ming Tzeng, Alexander T.H. Wu, Yun Yen
Argitaratua 2017Artigo -
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PTPN14 phosphatase and YAP promote TGFβ signalling in rheumatoid synoviocytes nork Angel Bottini, Dennis J. Wu, Rizi Ai, Michelle Le Roux, Beatrix Bartók, Stefano Bombardieri, Karen M. Doody, Vida Zhang, Cristiano Sacchetti, Martina Zoccheddu, Ana Lonic, Xiaochun Li, David L. Boyle, Deepa Hammaker, Tzu‐Ching Meng, Lin Liu, Maripat Corr, Stephanie M. Stanford, Myles Lewis, Wei Wang, Gary S. Firestein, Yeesim Khew‐Goodall, Costantino Pitzalis, Nunzio Bottini
Argitaratua 2019Artigo
Bilaketa egiteko lanabesak:
Antzeko gaiak
Biology
Biochemistry
Protein tyrosine phosphatase
Cell biology
Phosphorylation
Chemistry
Phosphatase
Gene
Signal transduction
Tyrosine
Tyrosine phosphorylation
Cancer research
Genetics
Medicine
Reactive oxygen species
Endocrinology
Enzyme
Internal medicine
Cancer
Cell growth
Cysteine
Insulin
Insulin receptor
Insulin resistance
Nitric oxide
Receptor
Cell
Cell culture
Insulin receptor substrate
LNCaP