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Author Details
Full Name
Nawar Al-Obaidi
Affiliation
Cardiovascular Research Unit, Newark Beth Israel Medical Center
ORCID
Career Start Year
2013
Papers
15
H Index
11
Expertise
CM4AI Collaborator
Andrej Sali (CM4AI)
PMID
Paper Title
Journal Title
Published Year
32627939
Racial disparities and outcomes of left ventricular assist device implantation as a bridge to heart transplantation.
ESC Heart Fail
2020
29377793
Prediction of enzymatic pathways by integrative pathway mapping.
Elife
2018
29867142
Functional assignment of multiple catabolic pathways for D-apiose.
Nat Chem Biol
2018
30249705
Novel Metabolic Pathways and Regulons for Hexuronate Utilization in Proteobacteria.
J Bacteriol
2018
26978037
Correction to "A General Strategy for the Discovery of Metabolic Pathways: D-Threitol, L-Threitol, and Erythritol Utilization in Mycobacterium smegmatis".
J Am Chem Soc
2016
27303900
Structure of an ABC transporter solute-binding protein specific for the amino sugars glucosamine and galactosamine.
Acta Crystallogr F Struct Biol Commun
2016
27402745
Assignment of function to a domain of unknown function: DUF1537 is a new kinase family in catabolic pathways for acid sugars.
Proc Natl Acad Sci U S A
2016
25540822
Experimental strategies for functional annotation and metabolism discovery: targeted screening of solute binding proteins and unbiased panning of metabolomes.
Biochemistry
2015
26560079
A General Strategy for the Discovery of Metabolic Pathways: d-Threitol, l-Threitol, and Erythritol Utilization in Mycobacterium smegmatis.
J Am Chem Soc
2015
26472925
ATP-binding Cassette (ABC) Transport System Solute-binding Protein-guided Identification of Novel d-Altritol and Galactitol Catabolic Pathways in Agrobacterium tumefaciens C58.
J Biol Chem
2015
25848029
Panoramic view of a superfamily of phosphatases through substrate profiling.
Proc Natl Acad Sci U S A
2015
25513739
Covalent docking predicts substrates for haloalkanoate dehalogenase superfamily phosphatases.
Biochemistry
2015
24947666
Identification of the in vivo function of the high-efficiency D-mannonate dehydratase in Caulobacter crescentus NA1000 from the enolase superfamily.
Biochemistry
2014
25145794
Investigating the physiological roles of low-efficiency D-mannonate and D-gluconate dehydratases in the enolase superfamily: pathways for the catabolism of L-gulonate and L-idonate.
Biochemistry
2014
23676670
Structure-guided discovery of the metabolite carboxy-SAM that modulates tRNA function.
Nature
2013
1 - 15 of 15
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row(s) 1 - 30 of 30
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