Kok R G, van Thor J J, Nugteren-Roodzant I M, Vosman B, Hellingwerf K J
Department of Microbiology, E. C. Slater Institute, BioCentrum Amsterdam, The Netherlands.
J Bacteriol. 1995 Jun;177(11):3295-307. doi: 10.1128/jb.177.11.3295-3307.1995.
Acinetobacter calcoaceticus BD413 produces an extracellular lipase, which is encoded by the lipA gene. Five lipase-deficient mutants have been generated via random insertion mutagenesis. Phenotypic characterization of these mutants revealed the presence of as many as four lipolytic enzymes in A. calcoaceticus. Biochemical evidence classified four of the mutants as export mutants, which presumably are defective in translocation of the lipase across the outer membrane. The additional mutant, designated AAC302, displays a LipA- phenotype, and yet the mutation in this strain was localized 0.84 kbp upstream of lipA. Sequence analysis of this region revealed an open reading frame, designated lipB, that is disrupted in AAC302. The protein encoded by this open reading frame shows extensive similarity to a chaperone-like helper protein of several pseudomonads, required for the production of extracellular lipase. Via complementation of AAC302 with a functional extrachromosomal copy of lipA, it could be determined that LipB is essential for lipase production. As shown by the use of a translational LipB-PhoA fusion construct, the C-terminal part of LipB of A. calcoaceticus BD413 is located outside the cytoplasm. Sequence analysis further strongly suggests that A. calcoaceticus LipB is N terminally anchored in the cytoplasmic membrane. Therefore, analogous to the situation in Pseudomonas species, however, lipB in A. calcoaceticus is located upstream of the structural lipase gene. lipB and lipA form a bicistronic operon, and the two genes are cotranscribed from an Escherichia coli sigma 70-type promoter. The reversed order of genes, in comparison with the situation in Pseudomonas species, suggests that LipA and LipB are produced in equimolar amounts. Therefore, the helper protein presumably does not only have a catalytic function, e.g., in folding of the lipase, but is also likely to act as a lipase-specific chaperone. A detailed model of the export route of the lipase of A. calcoaceticus BD413 is proposed.
醋酸钙不动杆菌BD413产生一种细胞外脂肪酶,该酶由lipA基因编码。通过随机插入诱变已产生了五个脂肪酶缺陷型突变体。对这些突变体的表型特征分析表明,醋酸钙不动杆菌中存在多达四种脂解酶。生化证据将其中四个突变体归类为输出突变体,推测它们在脂肪酶跨外膜转运方面存在缺陷。另一个突变体,命名为AAC302,表现出LipA-表型,然而该菌株中的突变位于lipA上游0.84 kbp处。对该区域的序列分析揭示了一个开放阅读框,命名为lipB,在AAC302中被破坏。这个开放阅读框编码的蛋白质与几种假单胞菌的一种伴侣样辅助蛋白具有广泛的相似性,该辅助蛋白是产生细胞外脂肪酶所必需的。通过用功能性的lipA染色体外拷贝对AAC302进行互补,可以确定LipB对脂肪酶的产生至关重要。如使用翻译性LipB-PhoA融合构建体所示,醋酸钙不动杆菌BD413的LipB的C末端部分位于细胞质外。序列分析进一步强烈表明,醋酸钙不动杆菌LipB在N末端锚定在细胞质膜中。然而,与假单胞菌属的情况类似,醋酸钙不动杆菌中的lipB位于结构脂肪酶基因的上游。lipB和lipA形成一个双顺反子操纵子,这两个基因从大肠杆菌σ70型启动子共转录。与假单胞菌属的情况相比,基因顺序相反,这表明LipA和LipB以等摩尔量产生。因此,这种辅助蛋白可能不仅具有催化功能,例如在脂肪酶折叠中,而且还可能作为一种脂肪酶特异性伴侣发挥作用。本文提出了醋酸钙不动杆菌BD413脂肪酶输出途径的详细模型。