Department of Microbiology, New York University School of Medicine, New York, New York, USA.
Van Andel Research Institute, Grand Rapids, Michigan, USA.
mBio. 2018 Jun 19;9(3):e00989-18. doi: 10.1128/mBio.00989-18.
It was recently reported that the human-exclusive pathogen secretes cytokinins, which had only been known as plant hormones. While cytokinins are well-established, adenine-based signaling molecules in plants, they have never been shown to participate in signal transduction in other kingdoms of life. is not known to interact with plants. Therefore, we tested the hypothesis that cytokinins trigger transcriptional changes within this bacterial species. Here, we show cytokinins induced the strong expression of the gene Rv0077c. We found that Rv0077c expression is repressed by a TetR-like transcriptional repressor, Rv0078. Strikingly, cytokinin-induced expression of Rv0077c resulted in a loss of acid-fast staining of While acid-fast staining is thought to be associated with changes in the bacterial cell envelope and virulence, Rv0077c-induced loss of acid-fastness did not affect antibiotic susceptibility or attenuate bacterial growth in mice, consistent with an unaltered mycolic acid profile of Rv0077c-expressing cells. Collectively, these findings show cytokinins signal transcriptional changes that can affect acid-fastness and that cytokinin signaling is no longer limited to the kingdom Plantae. Cytokinins have only previously been known as plant hormones. The discovery that they can be used as signaling molecules outside of plants broadens the repertoire of small molecules that can potentially affect gene expression in all domains of life.
最近有报道称,人类特有的病原体 分泌细胞分裂素,而细胞分裂素以前只被认为是植物激素。虽然细胞分裂素是植物中已被证实的腺嘌呤为基础的信号分子,但它们从未被证明参与其他生命王国的信号转导。 与植物没有已知的相互作用。因此,我们测试了这样一个假设,即细胞分裂素在这种细菌物种中引发转录变化。在这里,我们显示细胞分裂素诱导了 基因 Rv0077c 的强烈表达。我们发现 Rv0077c 的表达受到 TetR 样转录阻遏物 Rv0078 的抑制。引人注目的是,细胞分裂素诱导的 Rv0077c 表达导致 失去抗酸性染色。虽然抗酸性染色被认为与细菌细胞包膜的变化和毒力有关,但 Rv0077c 诱导的抗酸性丧失并不影响抗生素敏感性或减弱小鼠中的细菌生长,这与 Rv0077c 表达细胞的不变的类脂酸图谱一致。总之,这些发现表明细胞分裂素信号转导可以影响 抗酸性,并且细胞分裂素信号转导不再局限于植物界。细胞分裂素以前只被认为是植物激素。发现它们可以作为植物外的信号分子,这拓宽了潜在影响所有生命领域基因表达的小分子的 repertoire。