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在嗜酸热硫化叶菌中, FHA 和 von Willebrand 结构域蛋白 ArnA 和 ArnB 对菌毛表达的调控。

Regulation of archaella expression by the FHA and von Willebrand domain-containing proteins ArnA and ArnB in Sulfolobus acidocaldarius.

机构信息

Max Planck Institute for Terrestrial Microbiology, Molecular Biology of Archaea, Karl-von-Frisch-Strasse 10, 35043 Marburg, Germany.

出版信息

Mol Microbiol. 2012 Oct;86(1):24-36. doi: 10.1111/j.1365-2958.2012.08186.x. Epub 2012 Aug 22.

Abstract

The ability of microorganisms to sense and respond to sudden changes in their environment is often based on regulatory systems comprising reversible protein phosphorylation. The archaellum (former: archaeal flagellum) is used for motility in Archaea and therefore functionally analogous to the bacterial flagellum. In contrast with archaellum-mediated movement in certain members of the Euryarchaeota, this process, including its regulation, remains poorly studied in crenarchaeal organisms like Sulfolobus species. Recently, it was shown in Sulfolobus acidocaldarius that tryptone limiting conditions led to the induction of archaella expression and assembly. Here we have identified two proteins, the FHA domain-containing protein ArnA and the vWA domain-containing protein ArnB that are involved in regulating archaella expression in S. acidocaldarius. Both proteins are phosphorylated by protein kinases in vitro and interact strongly in vivo. Phenotypic analyses revealed that these two proteins are repressors of archaella expression. These results represent the first step in understanding the networks that underlie regulation of cellular motility in Crenarchaeota and emphasize the importance of protein phosphorylation in the regulation of cellular processes in the Archaea.

摘要

微生物感知和响应其环境中突然变化的能力通常基于由可逆蛋白磷酸化组成的调节系统。菌毛(原:古菌鞭毛)用于古菌的运动,因此在功能上与细菌鞭毛类似。与某些广古菌中菌毛介导的运动不同,这个过程,包括其调节,在诸如 Sulfolobus 物种等泉古菌生物中仍未得到充分研究。最近,在 Sulfolobus acidocaldarius 中表明,色氨酸限制条件导致菌毛表达和组装的诱导。在这里,我们鉴定了两种参与调节 S. acidocaldarius 菌毛表达的蛋白质,即含有 FHA 结构域的蛋白 ArnA 和含有 vWA 结构域的蛋白 ArnB。这两种蛋白均可在体外被蛋白激酶磷酸化,并在体内强烈相互作用。表型分析表明,这两种蛋白是菌毛表达的抑制剂。这些结果代表了理解 Crenarchaeota 中细胞运动调节的网络的第一步,并强调了蛋白磷酸化在古菌中细胞过程调节中的重要性。

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