Sayavedra-Soto L A, Byrd C M, Arp D J
Laboratory for Nitrogen Fixation Research, Department of Botany and Plant Pathology, Oregon State University, Corvallis OR 97331-2902, USA.
Arch Microbiol. 2001 Jul;176(1-2):114-20. doi: 10.1007/s002030100304.
The induction of the enzyme activities involved in butane metabolism in Pseudomonas butanovora was characterized. P. butanovora was grown on butane or its metabolites, both singly and in mixtures with other growth substrates. Cells grown in each of the butane metabolites readily consumed the growth substrate and downstream metabolites, but consumed the upstream butane metabolites more slowly. Upstream activities in the butane metabolism could be induced by downstream metabolites, but to much lower levels than with the primary substrate. The induction of butane oxidation was not repressed when P. butanovora was grown or incubated in a mixture of butane and 1-butanol, butyraldehyde or butyrate. However, no induction of butane consumption was observed in a mixture of butane and lactate, which is indicative of catabolite repression. In lactate-grown cells that were rid of the growth substrate and incubated with butane and acetylene (to inactivate newly formed butane monooxygenase), the consumption of butane, 1-butanol and butyraldehyde consumption was not induced. The overall results suggest an independent regulatory mechanism for each of the enzyme activities in butane metabolism. In addition, a low, constitutive butane oxidation was observed in cells grown on substrates other than butane metabolites.
对嗜丁烷假单胞菌中参与丁烷代谢的酶活性诱导进行了表征。嗜丁烷假单胞菌在丁烷或其代谢物上生长,单独生长以及与其他生长底物混合生长。在每种丁烷代谢物中生长的细胞很容易消耗生长底物和下游代谢物,但消耗上游丁烷代谢物的速度较慢。丁烷代谢中的上游活性可由下游代谢物诱导,但水平远低于初级底物。当嗜丁烷假单胞菌在丁烷与1-丁醇、丁醛或丁酸的混合物中生长或孵育时,丁烷氧化的诱导并未受到抑制。然而,在丁烷与乳酸的混合物中未观察到丁烷消耗的诱导,这表明存在分解代谢物阻遏。在去除生长底物并与丁烷和乙炔孵育(以灭活新形成的丁烷单加氧酶)的乳酸生长细胞中,丁烷、1-丁醇和丁醛的消耗未被诱导。总体结果表明丁烷代谢中每种酶活性都有独立的调节机制。此外,在以丁烷代谢物以外的底物生长的细胞中观察到低水平的组成型丁烷氧化。