Kok R G, Nudel C B, Gonzalez R H, Nugteren-Roodzant I M, Hellingwerf K J
Department of Microbiology, E.C. Slater Institute, BioCentrum Amsterdam, The Netherlands.
J Bacteriol. 1996 Oct;178(20):6025-35. doi: 10.1128/jb.178.20.6025-6035.1996.
The extracellular lipase (LipA) produced by Acinetobacter calcoaceticus BD413 is required for growth of the organism on triolein, since mutant strains that lack an active lipase fail to grow with triolein as the sole carbon source. Surprisingly, extracellular lipase activity and expression of the structural lipase gene (lipA), the latter measured through lacZ as a transcriptional reporter, are extremely low in triolein cultures of LipA+ strains. The explanation for this interesting paradox lies in the effect of fatty acids on the expression of lipA. We found that long-chain fatty acids, especially, strongly repress the expression of lipA, thereby negatively influencing the production of lipase. We propose the involvement of a fatty acyl-responsive DNA-binding protein in regulation of expression of the A. calcoaceticus lipBA operon. The potential biological significance of the observed physiological competition between expression and repression of lipA in the triolein medium is discussed. Activity of the extracellular lipase is also negatively affected by proteolytic degradation, as shown in in vitro stability experiments and by Western blotting (immunoblotting) of concentrated supernatants of stationary-phase cultures. In fact, the relatively high levels of extracellular lipase produced in the early stationary phase in media which contain hexadecane are due only to enhanced stability of the extracellular enzyme under those conditions. The rapid extracellular degradation of LipA of A. calcoaceticus BD413 by an endogenous protease is remarkable and suggests that proteolytic degradation of the enzyme is another important factor in regulating the level of active extracellular lipase.
乙酸钙不动杆菌BD413产生的胞外脂肪酶(LipA)是该生物体利用三油酸甘油酯生长所必需的,因为缺乏活性脂肪酶的突变菌株无法以三油酸甘油酯作为唯一碳源生长。令人惊讶的是,在LipA +菌株的三油酸甘油酯培养物中,胞外脂肪酶活性以及结构脂肪酶基因(lipA)的表达(后者通过lacZ作为转录报告基因进行测定)极低。对这一有趣悖论的解释在于脂肪酸对lipA表达的影响。我们发现长链脂肪酸尤其强烈抑制lipA的表达,从而对脂肪酶的产生产生负面影响。我们提出一种脂肪酰基反应性DNA结合蛋白参与了乙酸钙不动杆菌lipBA操纵子表达的调控。讨论了在三油酸甘油酯培养基中观察到的lipA表达与抑制之间生理竞争的潜在生物学意义。如体外稳定性实验以及对稳定期培养物浓缩上清液进行的蛋白质印迹法(免疫印迹法)所示,胞外脂肪酶的活性也受到蛋白水解降解的负面影响。事实上,在含有十六烷的培养基中,稳定期早期产生的相对高水平的胞外脂肪酶仅是由于在这些条件下胞外酶稳定性增强所致。乙酸钙不动杆菌BD413的LipA被内源性蛋白酶快速胞外降解这一现象很显著,表明该酶的蛋白水解降解是调节活性胞外脂肪酶水平的另一个重要因素。