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Harry A Dailey

Showing results (31-40 of 54) with videos related to

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Applied and Environmental Microbiology|June 7, 2011
Discovery of a gene involved in a third bacterial protoporphyrinogen oxidase activity through comparative genomic analysis and functional complementationTye O Boynton, Svetlana Gerdes, Sarah H Craven, et al.
International Journal of Molecular Sciences|June 27, 2024
Impact of Phosphorylation at Various Sites on the Active Pocket of Human Ferrochelatase: Insights from Molecular Dynamics SimulationsMingshan Guo, Yuhong Lin, Chibuike David Obi, et al.
Microbiology and Molecular Biology Reviews : MMBR|January 27, 2017
Prokaryotic Heme Biosynthesis: Multiple Pathways to a Common Essential ProductHarry A Dailey, Tamara A Dailey, Svetlana Gerdes, et al.
The Biochemical Journal|August 17, 2021
Insight into the function of active site residues in the catalytic mechanism of human ferrochelataseAmy E Medlock, Wided Najahi-Missaoui, Mesafint T Shiferaw, et al.
Blood Advances|September 7, 2021
The immunometabolite itaconate inhibits heme synthesis and remodels cellular metabolism in erythroid precursorsJason R Marcero, James E Cox, Hector A Bergonia, et al.
Biomolecules|October 28, 2023
Exploiting Differences in Heme Biosynthesis between Bacterial Species to Screen for Novel AntimicrobialsLaurie K Jackson, Tammy A Dailey, Brenden Anderle, et al.
Journal of Structural and Functional Genomics|July 21, 2004
Expression of human proteins at the Southeast Collaboratory for Structural GenomicsMichael R Mayer, Tamara A Dailey, Clay M Baucom, et al.
Accounts of Chemical Research|March 19, 2003
The Southeast Collaboratory for Structural Genomics: a high-throughput gene to structure factoryMichael W W Adams, Harry A Dailey, Lawrence J DeLucas, et al.
Plos One|August 20, 2015
Identification of the Mitochondrial Heme Metabolism ComplexAmy E Medlock, Mesafint T Shiferaw, Jason R Marcero, et al.
Biochemistry|June 15, 2007
Altered orientation of active site residues in variants of human ferrochelatase. Evidence for a hydrogen bond network involved in catalysisHarry A Dailey, Chia-Kuei Wu, Peter Horanyi, et al.
Pageof 6

Showing results (31-40 of 54) with videos related to

Sort By:
Pageof 6
Applied and Environmental Microbiology|June 7, 2011
Discovery of a gene involved in a third bacterial protoporphyrinogen oxidase activity through comparative genomic analysis and functional complementationTye O Boynton, Svetlana Gerdes, Sarah H Craven, et al.
International Journal of Molecular Sciences|June 27, 2024
Impact of Phosphorylation at Various Sites on the Active Pocket of Human Ferrochelatase: Insights from Molecular Dynamics SimulationsMingshan Guo, Yuhong Lin, Chibuike David Obi, et al.
Microbiology and Molecular Biology Reviews : MMBR|January 27, 2017
Prokaryotic Heme Biosynthesis: Multiple Pathways to a Common Essential ProductHarry A Dailey, Tamara A Dailey, Svetlana Gerdes, et al.
The Biochemical Journal|August 17, 2021
Insight into the function of active site residues in the catalytic mechanism of human ferrochelataseAmy E Medlock, Wided Najahi-Missaoui, Mesafint T Shiferaw, et al.
Blood Advances|September 7, 2021
The immunometabolite itaconate inhibits heme synthesis and remodels cellular metabolism in erythroid precursorsJason R Marcero, James E Cox, Hector A Bergonia, et al.
Biomolecules|October 28, 2023
Exploiting Differences in Heme Biosynthesis between Bacterial Species to Screen for Novel AntimicrobialsLaurie K Jackson, Tammy A Dailey, Brenden Anderle, et al.
Journal of Structural and Functional Genomics|July 21, 2004
Expression of human proteins at the Southeast Collaboratory for Structural GenomicsMichael R Mayer, Tamara A Dailey, Clay M Baucom, et al.
Accounts of Chemical Research|March 19, 2003
The Southeast Collaboratory for Structural Genomics: a high-throughput gene to structure factoryMichael W W Adams, Harry A Dailey, Lawrence J DeLucas, et al.
Plos One|August 20, 2015
Identification of the Mitochondrial Heme Metabolism ComplexAmy E Medlock, Mesafint T Shiferaw, Jason R Marcero, et al.
Biochemistry|June 15, 2007
Altered orientation of active site residues in variants of human ferrochelatase. Evidence for a hydrogen bond network involved in catalysisHarry A Dailey, Chia-Kuei Wu, Peter Horanyi, et al.
Pageof 6