UnlabelledDetermining the function and regulation of paralogues is important in understanding microbial functional genomics and environmental adaptation. Heme homeostasis is crucial for the survival of environmental microorganisms. Most Shewanella species encode two paralogues of ferrochelatase, the terminal enzyme in the heme biosynthesis pathway. The function and transcriptional regulation of two ferrochelatase genes, hemH1 and hemH2, were investigated in Shewanella loihica PV-4. The disruption of hemH1 but not hemH2 resulted in a significant accumulation of extracellular protoporphyrin IX (PPIX), the precursor to heme, and decreased intracellular heme levels. hemH1 was constitutively expressed, and the expression of hemH2 increased when ...
Ferric uptake regulator (Fur) is a global regulator that controls bacterial iron homeostasis. In thi...
International audienceBartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacter...
The hemF gene of Rhodobacter sphaeroides 2.4.1 is predicted to code for an oxygen-dependent copropor...
UnlabelledDetermining the function and regulation of paralogues is important in understanding microb...
BackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthesis of c-...
BackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthesis of c-...
AbstractBackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthes...
Heme is a suggested limiting factor in peroxidase production by Aspergillus spp., which are well-kno...
Ferric uptake regulator (Fur) is a global regulator that controls bacterial iron homeostasis. In thi...
Bartonellae are hemotropic bacteria, agents responsible for emerging zoonoses. These Alphaproteobact...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Rhodobacter capsulatus, a purple non-sulfur photosynthetic bacterium, synthesizes four tetrapyrrole ...
<div><p><em>Bartonellae</em> are hemotropic bacteria, agents of emerging zoonoses. These bacteria ar...
Ferric uptake regulator (Fur) is a global regulator that controls bacterial iron homeostasis. In thi...
International audienceBartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacter...
The hemF gene of Rhodobacter sphaeroides 2.4.1 is predicted to code for an oxygen-dependent copropor...
UnlabelledDetermining the function and regulation of paralogues is important in understanding microb...
BackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthesis of c-...
BackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthesis of c-...
AbstractBackgroundMost species of Shewanella harbor two ferrochelatase paralogues for the biosynthes...
Heme is a suggested limiting factor in peroxidase production by Aspergillus spp., which are well-kno...
Ferric uptake regulator (Fur) is a global regulator that controls bacterial iron homeostasis. In thi...
Bartonellae are hemotropic bacteria, agents responsible for emerging zoonoses. These Alphaproteobact...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Bartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacteria are heme auxotroph ...
Rhodobacter capsulatus, a purple non-sulfur photosynthetic bacterium, synthesizes four tetrapyrrole ...
<div><p><em>Bartonellae</em> are hemotropic bacteria, agents of emerging zoonoses. These bacteria ar...
Ferric uptake regulator (Fur) is a global regulator that controls bacterial iron homeostasis. In thi...
International audienceBartonellae are hemotropic bacteria, agents of emerging zoonoses. These bacter...
The hemF gene of Rhodobacter sphaeroides 2.4.1 is predicted to code for an oxygen-dependent copropor...