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Mechanism of aluminium-induced porphyrin synthesis in bacteria
Rivka Mamet
, Ram Scharf
, Yoram Zimmels
, Shlomo Kimchie
,
Nili Schoenfeld
*
*
Corresponding author for this work
Clinical Departments
Rabin Medical Center Israel
Technion-Israel Institute of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Biochemistry, Genetics and Molecular Biology
Synthase
100%
Carboxy-Lyases
100%
Porphobilinogen Deaminase
100%
Porphyrin
100%
Bacterium
100%
Enzyme
66%
Anabolism
66%
Porphobilinogen Synthase
66%
Ferrochelatase
66%
Arthrobacter
66%
Bacterial Growth
33%
Agricultural and Biological Sciences
Carboxy-Lyases
100%
Aminolevulinic Acid
100%
Porphobilinogen Deaminase
100%
Porphyrin
100%
Bacterium
100%
Porphobilinogen Synthase
66%
Arthrobacter Aurescens
66%
Ferrochelatase
66%
Heme
66%
Enzyme
66%
Keyphrases
Aluminum Toxicity
100%
Porphyrin Metabolism
100%
5-aminolevulinate
100%
Incubation
60%
Porphobilinogen Deaminase
60%
Uroporphyrinogen Decarboxylase
60%
Haem
40%
Biosynthetic Pathway
40%
Porphyrin
40%
Ferrochelatase
40%
Dehydratase
40%
Arthrobacter Aurescens
40%
Mechanism of Action
20%
Decarboxylase Activity
20%
Fold Increase
20%
Bacterial Growth
20%
Immunology and Microbiology
Ferrochelatase
100%
Arthrobacter
100%
Heme
100%
Bacterium
100%
Bacterial Growth
50%
Pharmacology, Toxicology and Pharmaceutical Science
Uroporphyrinogen Decarboxylase
50%
Porphobilinogen Synthase
33%