Hening Lin to Pyrococcus horikoshii
This is a "connection" page, showing publications Hening Lin has written about Pyrococcus horikoshii.
Connection Strength
3.110
-
Noncanonical Radical SAM Enzyme Chemistry Learned from Diphthamide Biosynthesis. Biochemistry. 2018 06 26; 57(25):3454-3459.
Score: 0.558
-
Organometallic and radical intermediates reveal mechanism of diphthamide biosynthesis. Science. 2018 03 16; 359(6381):1247-1250.
Score: 0.552
-
Organometallic Complex Formed by an Unconventional Radical S-Adenosylmethionine Enzyme. J Am Chem Soc. 2016 08 10; 138(31):9755-8.
Score: 0.494
-
Reconstitution of diphthine synthase activity in vitro. Biochemistry. 2010 Nov 09; 49(44):9649-57.
Score: 0.332
-
Mechanistic understanding of Pyrococcus horikoshii Dph2, a [4Fe-4S] enzyme required for diphthamide biosynthesis. Mol Biosyst. 2011 Jan; 7(1):74-81.
Score: 0.330
-
Diphthamide biosynthesis requires an organic radical generated by an iron-sulphur enzyme. Nature. 2010 Jun 17; 465(7300):891-6.
Score: 0.323
-
The asymmetric function of Dph1-Dph2 heterodimer in diphthamide biosynthesis. J Biol Inorg Chem. 2019 09; 24(6):777-782.
Score: 0.153
-
Methods for Studying the Radical SAM Enzymes in Diphthamide Biosynthesis. Methods Enzymol. 2018; 606:421-438.
Score: 0.136
-
Substrate-Dependent Cleavage Site Selection by Unconventional Radical S-Adenosylmethionine Enzymes in Diphthamide Biosynthesis. J Am Chem Soc. 2017 04 26; 139(16):5680-5683.
Score: 0.130
-
Dph3 is an electron donor for Dph1-Dph2 in the first step of eukaryotic diphthamide biosynthesis. J Am Chem Soc. 2014 Feb 05; 136(5):1754-7.
Score: 0.104