Weiss E, Mamay H K, Dasch G A
J Bacteriol. 1982 Apr;150(1):245-50. doi: 10.1128/jb.150.1.245-250.1982.
Ornithine metabolism was studied in two strains of the trench fever rickettsia Rochalimaea quintana, Fuller and Guadalupe, and in the vole agent, a strain of Rochalimaea but not necessarily of Rochalimaea quintana. The metabolic activity of intact cells and cell-free extracts was measured by monitoring the evolution of 14CO2 from [1-14C]ornithine. Low levels of activity were obtained with all three strains, but requirements for the demonstration of this activity differed. With the cells of the Fuller and Guadalupe strains, the decarboxylation of ornithine was almost completely dependent on added pyruvate or succinate, presumably as sources of energy for transport. This enhancement was not prevented by the presence of chloramphenicol. The activity of the vole agent, on the other hand, required the complete medium. This activity was prevented by chloramphenicol added at the same time as the medium but not by chloramphenicol added after 1 h of incubation. In cell-free extracts, the demonstration of ornithine decarboxylase activity in the vole agent required prior induction with medium containing ornithine, whereas in the other two strains, the activity was constitutive. The activities of the extracts of the Fuller strain and the vole agent differed also in pH optimum, which was somewhat lower for the vole agent, and in the added pyridoxal phosphate requirement, which was greater for the Fuller strain. Comparable experiments with Rickettsia typhi and Rickettsia prowazekii failed to reveal evidence of ornithine metabolism.
在战壕热立克次体罗沙利马菌(Rochalimaea quintana)的两个菌株Fuller和Guadalupe以及田鼠病原体(一种罗沙利马菌,但不一定是罗沙利马菌罗沙利马菌)中研究了鸟氨酸代谢。通过监测[1-14C]鸟氨酸中14CO2的释放来测量完整细胞和无细胞提取物的代谢活性。所有三个菌株的活性水平都很低,但证明这种活性的要求不同。对于Fuller和Guadalupe菌株的细胞,鸟氨酸的脱羧几乎完全依赖于添加的丙酮酸或琥珀酸,推测它们作为转运的能量来源。氯霉素的存在并不能阻止这种增强作用。另一方面,田鼠病原体的活性需要完全培养基。与培养基同时添加氯霉素可阻止这种活性,但在孵育1小时后添加氯霉素则不能。在无细胞提取物中,田鼠病原体中鸟氨酸脱羧酶活性的证明需要先用含鸟氨酸的培养基进行预诱导,而在其他两个菌株中,该活性是组成型的。Fuller菌株提取物和田鼠病原体提取物的活性在最适pH值方面也有所不同,田鼠病原体的最适pH值略低,在添加磷酸吡哆醛的需求方面也不同,Fuller菌株的需求更大。对伤寒立克次体和普氏立克次体进行的类似实验未能揭示鸟氨酸代谢的证据。