Showing results (1-10 of 13) with videos related to
Sort By:
Pageof 2
Analytical Chemistry|January 12, 2022
Targeted Profiling of Epitranscriptomic Reader, Writer, and Eraser Proteins Accompanied with Radioresistance in Breast Cancer CellsTianyu F Qi, Weili Miao, Yinsheng WangAnalytical Chemistry|June 9, 2023
Targeted Profiling of Epitranscriptomic Reader, Writer, and Eraser Proteins Regulated by H3K36me3Jiekai Yin, Tianyu F Qi, Lin Li, et al.Cancer Research|August 4, 2018
A Targeted Quantitative Proteomic Approach Assesses the Reprogramming of Small GTPases during Melanoma MetastasisMing Huang, Tianyu F Qi, Lin Li, et al.Proteomics|December 24, 2021
Quantitative proteomics revealed new functions of ALKBH4Kailin Yu, Tianyu F Qi, Weili Miao, et al.Proteomics|April 20, 2022
Parallel-reaction monitoring revealed altered expression of a number of epitranscriptomic reader, writer, and eraser proteins accompanied with colorectal cancer metastasisTianyu F Qi, Feng Tang, Jiekai Yin, et al.Journal of Proteome Research|October 25, 2021
Targeted Quantitative Profiling of GTP-Binding Proteins Associated with Metastasis of Melanoma CellsRong Cai, David Bade, Xiaochuan Liu, et al.Analytical Chemistry|September 9, 2022
Targeted Quantitative Profiling of Epitranscriptomic Reader, Writer, and Eraser Proteins Using Stable Isotope-Labeled PeptidesTianyu F Qi, Xiaochuan Liu, Feng Tang, et al.Proteomics|June 9, 2020
Discovery of TBC1D7 as a Potential Driver for Melanoma Cell InvasionTianyu F Qi, Lei Guo, Ming Huang, et al.Analytical Chemistry|October 20, 2022
Targeted Proteomic Analysis of Small GTPases in Radioresistant Breast Cancer CellsZi Gao, Yen-Yu Yang, Ming Huang, et al.Scientific Reports|February 14, 2020
A Targeted Quantitative Proteomic Method Revealed a Substantial Reprogramming of Kinome during Melanoma MetastasisWeili Miao, Lin Li, Xiaochuan Liu, et al.Pageof 2