Kodani Shinya, Lodato Michael A, Durrant Marcus C, Picart Francis, Willey Joanne M
Department of Biology, Hofstra University, Hempstead, NY 11549, USA.
Mol Microbiol. 2005 Dec;58(5):1368-80. doi: 10.1111/j.1365-2958.2005.04921.x.
The developmentally complex soil microbe Streptomyces tendae secretes a hydrophobic peptide that restored to developmental mutants of S. coelicolor the ability to raise aerial hyphae. The S. tendae peptide, SapT, has a lantibiotic structure and molecular modelling predicts that it is amphiphilic, making it structurally and functionally similar to the SapB peptide produced by S. coelicolor. However, SapT, which bears three beta-methyl lanthionine bridges and one lanthionine bridge and demonstrated limited antibiotic activity, is distinct from SapB. The amphiphilic nature of both SapT and SapB is required for their ability to serve as biosurfactants facilitating the emergence of newly formed aerial hyphae. Remarkably, SapB and SapT, and the fungal hydrophobin SC3 were shown to restore to a SapB-deficient S. coelicolor mutant the capacity to undergo complete morphogenesis, such that the extracellular addition of protein resulted in sporulation. This suggests that the initiation of aerial growth may also indirectly trigger the signal transduction events needed for differentiation. These data imply that the production of morphogenetic peptides may be common among the streptomycetes, but that while their ability to function as biosurfactants is conserved, their specific lantibiotic structure is not. Finally, the identification of a second lanthionine-containing morphogenetic peptide suggests that lantibiotic structure and function may be more diverse than previously thought.
发育复杂的土壤微生物天蓝色链霉菌分泌一种疏水肽,该肽可恢复灰色链霉菌发育突变体产生气生菌丝的能力。天蓝色链霉菌肽SapT具有羊毛硫抗生素结构,分子建模预测它是两亲性的,这使其在结构和功能上与灰色链霉菌产生的SapB肽相似。然而,SapT带有三个β-甲基羊毛硫氨酸桥和一个羊毛硫氨酸桥,且显示出有限的抗生素活性,它与SapB不同。SapT和SapB的两亲性是它们作为生物表面活性剂促进新形成的气生菌丝出现的能力所必需的。值得注意的是,SapB和SapT以及真菌疏水蛋白SC3被证明可恢复缺乏SapB的灰色链霉菌突变体进行完全形态发生的能力,使得细胞外添加蛋白质会导致孢子形成。这表明气生生长的起始也可能间接触发分化所需的信号转导事件。这些数据意味着形态发生肽的产生在链霉菌中可能很常见,但是虽然它们作为生物表面活性剂的功能是保守的,但其特定的羊毛硫抗生素结构并非如此。最后,第二种含羊毛硫氨酸的形态发生肽的鉴定表明羊毛硫抗生素的结构和功能可能比以前认为的更加多样。