Hoffmann Lena, Schummer Andreas, Reimann Julia, Haurat Maria F, Wilson Amanda J, Beeby Morgan, Warscheid Bettina, Albers Sonja-V
Molecular Biology of Archaea, Institute of Biology II, Faculty of Biology, Microbiology, University of Freiburg, Freiburg, Germany.
Department of Biochemistry and Functional Proteomics, Institute of Biology II, Faculty of Biology, University of Freiburg, Freiburg, Germany.
Microbiologyopen. 2017 Feb;6(1). doi: 10.1002/mbo3.414. Epub 2016 Oct 22.
Expression of the archaellum, the archaeal-type IV pilus-like rotating motility structure is upregulated under nutrient limitation. This is controlled by a network of regulators, called the archaellum regulatory network (arn). Several of the components of this network in Sulfolobus acidocaldarius can be phosphorylated, and the deletion of the phosphatase PP2A results in strongly increased motility during starvation, indicating a role for phosphorylation in the regulation of motility. Analysis of the motility of different protein kinase deletion strains revealed that deletion of saci_0965, saci_1181, and saci_1193 resulted in reduced motility, whereas the deletion of saci_1694 resulted in hypermotility. Here ArnC (Saci_1193) and ArnD (Saci_1694) are characterized. Purified ArnC and ArnD phosphorylate serine and threonine residues in the C-terminus of the repressor ArnB. arnC is upregulated in starvation medium, whereas arnD is constitutively expressed. However, while differences in the expression and levels of flaB were observed in the ΔarnD strain during growth under rich conditions, under nutrient limiting conditions the ΔarnC and ΔarnD strains showed no large differences in the expression levels of the archaellum or of the studied regulators. This suggests that next to the regulation via the archaellum regulatory network additional regulatory mechanisms of expression and/or activity of the archaellum exist.
古菌鞭毛(一种类似于古菌IV型菌毛的旋转运动结构)的表达在营养限制条件下会上调。这是由一个称为古菌鞭毛调控网络(arn)的调控因子网络控制的。嗜酸热硫化叶菌中该网络的几个组分可以被磷酸化,并且磷酸酶PP2A的缺失会导致饥饿期间运动性显著增强,这表明磷酸化在运动性调控中发挥作用。对不同蛋白激酶缺失菌株的运动性分析表明,saci_0965、saci_1181和saci_1193的缺失会导致运动性降低,而saci_1694的缺失会导致运动性增强。在此对ArnC(Saci_1193)和ArnD(Saci_1694)进行了表征。纯化的ArnC和ArnD会使阻遏物ArnB的C末端的丝氨酸和苏氨酸残基磷酸化。arnC在饥饿培养基中上调,而arnD组成型表达。然而,虽然在丰富条件下生长期间在ΔarnD菌株中观察到了flaB表达和水平的差异,但在营养限制条件下,ΔarnC和ΔarnD菌株在古菌鞭毛或所研究调控因子的表达水平上没有很大差异。这表明除了通过古菌鞭毛调控网络进行调控外,还存在古菌鞭毛表达和/或活性的其他调控机制。