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1 ed by a partial reduction in the activity of protoporphyrinogen oxidase.
2 ate enzyme in the heme biosynthetic pathway, protoporphyrinogen oxidase.
3 G mutant, defective in the penultimate step, protoporphyrinogen oxidase.
4 variegate porphyria, caused by deficiency of protoporphyrinogen oxidase.
5 igh concentrations, this metabolite inhibits protoporphyrinogen oxidase, a key enzyme in porphyrin sy
8 establishes that a nonsense mutation in the protoporphyrinogen oxidase gene is the underlying mutati
9 ied two underlying missense mutations in the protoporphyrinogen oxidase gene, consisting of a G-to-A
10 eported G-to-T transversion in exon 5 of the protoporphyrinogen oxidase gene, resulting in the substi
12 along with the terminal two pathway enzymes, protoporphyrinogen oxidase (HemY) and ferrochelatase, is
14 ria, caused by monoallelic variants in PPOX (protoporphyrinogen oxidase), leads to acute visceral att
16 is article, we report the isolation of plant protoporphyrinogen oxidase (PPO) genes and the isolation
18 A continuous spectrofluorimetric assay for protoporphyrinogen oxidase (PPO, EC 1.3.3.4) activity ha
20 rder that results from partial deficiency of protoporphyrinogen oxidase (PPOX) activity caused by mut
21 nt and algal cells, inhibition of the enzyme protoporphyrinogen oxidase (Protox) by the N-phenyl hete
22 ed fluorometric assay that employed purified protoporphyrinogen oxidase to convert protoporphyrinogen
23 side in the IMS or outer membrane, including protoporphyrinogen oxidase, were reassigned to the matri
24 enylether class of herbicides, which targets protoporphyrinogen oxidase, which in turn causes singlet