Oxalic acid is produced by a variety of organisms ranging from simple microbes to complex animals. This acid has been proposed to fulfill various physiological and pathological functions which vary between organisms. In bacteria from the Burkholderia genus, oxalate secretion has been shown to be quorum sensing dependent and to support pathogenicity and cell viability. In light of the critical roles of oxalate in Burkholderia as well as other organisms, it is surprising that our understanding of how this simple dicarboxylate is biosynthesized remains incomplete. Here we report the expression, purification, and partial characterization of the first intact bacterial oxalate biosynthetic enzyme, Obc1, from B. mallei. An N-terminal His-tagged Bm...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
The ability to biosynthesize oxalic acid can provide beneficial functions to plants; however, uncont...
Oxalic acid, as one of nature's most highly oxidised compounds, is toxic to most organisms. It is in...
Oxalate is the only substrate that supports the growth of the gram negative anaerobe, Oxalobacter fo...
Oxalate secretion by fungi is known to be associated with fungal pathogenesis. In addition, oxalate ...
Oxalate decarboxylase (OxDC) from Bacillus subtilis is a Mn-dependent hexameric enzyme that converts...
Whole-cell and cell-extract experiments were performed to study the mechanism of oxalate metabolism ...
Many food plants accumulate oxalate, which humans absorb but do not metabolize, leading to the forma...
AIMS: This study was undertaken to evaluate the oxalate-degrading activity in several Lactobacillus ...
Moorella thermoacetica is an anaerobic acetogen, a class of bacteria that is found in the soil, the ...
none7noOxalic acid occurs extensively in nature and plays diverse roles, especially in pathological ...
none5Oxalate is a highly toxic compound ubiquitous in the plant kingdom and widely consumed in human...
none8noAims: This study was undertaken to evaluate the oxalate-degrading activity in several Lactoba...
Many food plants accumulate oxalate, which humans absorb but do not metabolize, leading to the forma...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
The ability to biosynthesize oxalic acid can provide beneficial functions to plants; however, uncont...
Oxalic acid, as one of nature's most highly oxidised compounds, is toxic to most organisms. It is in...
Oxalate is the only substrate that supports the growth of the gram negative anaerobe, Oxalobacter fo...
Oxalate secretion by fungi is known to be associated with fungal pathogenesis. In addition, oxalate ...
Oxalate decarboxylase (OxDC) from Bacillus subtilis is a Mn-dependent hexameric enzyme that converts...
Whole-cell and cell-extract experiments were performed to study the mechanism of oxalate metabolism ...
Many food plants accumulate oxalate, which humans absorb but do not metabolize, leading to the forma...
AIMS: This study was undertaken to evaluate the oxalate-degrading activity in several Lactobacillus ...
Moorella thermoacetica is an anaerobic acetogen, a class of bacteria that is found in the soil, the ...
none7noOxalic acid occurs extensively in nature and plays diverse roles, especially in pathological ...
none5Oxalate is a highly toxic compound ubiquitous in the plant kingdom and widely consumed in human...
none8noAims: This study was undertaken to evaluate the oxalate-degrading activity in several Lactoba...
Many food plants accumulate oxalate, which humans absorb but do not metabolize, leading to the forma...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
Penicillium chrysogenum is widely used as an industrial antibiotic producer, in particular in the sy...
The ability to biosynthesize oxalic acid can provide beneficial functions to plants; however, uncont...