Hardie K R, Seydel A, Guilvout I, Pugsley A P
Unité de Génétique Moléculaire, Paris, France.
Mol Microbiol. 1996 Dec;22(5):967-76. doi: 10.1046/j.1365-2958.1996.01539.x.
The chaperone-like protein of the main terminal branch of the general secretory pathway from Klebsiella oxytoca, the outer membrane lipoprotein PulS, protects the multimeric secretin PulD from degradation and promotes its correct localization to the outer membrane. To determine whether these are separable functions, or whether resistance to proteolysis results simply from correct localization of PulD, we replaced the lipoprotein-type signal peptide of PulS by the signal peptide of periplasmic maltose-binding protein. The resulting periplasmic PulS retained its ability to protect PulD, but not its ability to localize PulD to the outer membrane and to function in pullulanase secretion. Periplasmic PulS competed with wild-type PulS to prevent pullulanase secretion, presumably again by causing mislocalization of PulD. A hybrid protein comprising the mature part of PulS fused to the C-terminus of full-length maltose-binding protein (MalE-PulS) had similar properties to the periplasmic PulS protein. Moreover, MalE-PulS was shown to associate with PulD by amylose-affinity chromatography. The MalE-PulS hybrid was rendered completely functional (i.e. it restored pullulanase secretion in a pulS mutant) by replacing its signal peptide with a lipoprotein-type signal peptide. However, this fattyacylated hybrid protein was only functional if it also carried a lipoprotein sorting signal that targeted it to the outer membrane. Thus, the two functions of PulS are separate and fully dissociable. Incorrect localization, rather than proteolysis, of PulD in the absence of PulS was shown to be the factor that causes high-level induction of the phage shock response. The Erwinia chrysanthemi PulS homologue, OutS, can substitute for PulS, and PulS can protect the secretin OutD from proteolysis in Escherichia coli, indicating the possible existence of a family of PulS-like chaperone proteins.
产酸克雷伯菌通用分泌途径主末端分支的伴侣样蛋白——外膜脂蛋白PulS,可保护多聚体分泌素PulD不被降解,并促进其正确定位于外膜。为了确定这些功能是否可分离,或者PulD对蛋白水解的抗性是否仅仅源于其正确定位,我们将PulS的脂蛋白型信号肽替换为周质麦芽糖结合蛋白的信号肽。由此产生的周质PulS保留了保护PulD的能力,但失去了将PulD定位于外膜以及在支链淀粉酶分泌中发挥作用的能力。周质PulS与野生型PulS竞争以阻止支链淀粉酶分泌,推测这也是通过导致PulD定位错误实现的。一种由PulS的成熟部分与全长麦芽糖结合蛋白(MalE-PulS)的C末端融合而成的杂合蛋白,具有与周质PulS蛋白相似的特性。此外,通过直链淀粉亲和层析显示MalE-PulS与PulD相关联。通过将其信号肽替换为脂蛋白型信号肽,MalE-PulS杂合体变得完全有功能(即它恢复了pulS突变体中的支链淀粉酶分泌)。然而,这种脂肪酰化的杂合蛋白只有在它还携带将其靶向到外膜的脂蛋白分选信号时才具有功能。因此,PulS的这两种功能是分开且完全可分离的。在没有PulS的情况下,PulD的错误定位而非蛋白水解被证明是导致噬菌体休克反应高水平诱导的因素。菊欧文氏菌PulS的同源物OutS可以替代PulS,并且PulS可以保护大肠杆菌中的分泌素OutD不被蛋白水解,这表明可能存在一个PulS样伴侣蛋白家族。