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Elife|December 15, 2017
SIRT2 and lysine fatty acylation regulate the transforming activity of K-Ras4aHui Jing, Xiaoyu Zhang, Stephanie A Wisner, et al.Methods in Molecular Biology (Clifton, N.J.)|July 12, 2017
Using Clickable NAD+ Analogs to Label Substrate Proteins of PARPsLu Zhang, Hening LinMethods in Enzymology|May 25, 2023
Use of alkyne-tagged myristic acid to detect N-terminal myristoylationYilai Xu, Hening LinScientific Reports|February 24, 2015
Efficient demyristoylase activity of SIRT2 revealed by kinetic and structural studiesYan-Bin Teng, Hui Jing, Pornpun Aramsangtienchai, et al.Current Protocols in Chemical Biology|November 29, 2012
Labeling Substrate Proteins of Poly(ADP-ribose) Polymerases with Clickable NAD AnalogHong Jiang, Hening LinAnnual Review of Biochemistry|April 13, 2021
Understanding the Function of Mammalian Sirtuins and Protein Lysine AcylationMiao Wang, Hening LinFrontiers in Cell and Developmental Biology|August 9, 2021
Lysine Fatty Acylation: Regulatory Enzymes, Research Tools, and Biological FunctionGarrison Komaniecki, Hening LinACS Chemical Biology|May 27, 2020
N-Myristoyltransferase as a Glycine and Lysine Myristoyltransferase in Cancer, Immunity, and InfectionsTatsiana Kosciuk, Hening LinFrontiers in Pharmacology|October 15, 2021
Sirtuin Modulators in Cellular and Animal Models of Human DiseasesJun Young Hong, Hening LinJournal of the American Chemical Society|October 28, 2004
A chemoenzymatic approach to glycopeptide antibioticsHening Lin, Christopher T WalshPageof 85