Kawada-Matsuo M, Shibata Y, Yamashita Y
Department of Preventive Dentistry, Kyushu University Faculty of Dental Science, Higashi-ku, Fukuoka, Japan.
Oral Microbiol Immunol. 2009 Apr;24(2):173-6. doi: 10.1111/j.1399-302X.2008.00485.x.
In bacteria, two-component systems (TCS) involving the products of a histidine kinase gene (hk) and a response regulator gene (rr) play important roles in adaptation to environmental changes. Fourteen hk-rr homologs and one orphan rr homolog were identified in the Streptococcus mutans UA159 genome database. There have been no comprehensive evaluations of the roles of rr homologs in the acid tolerance of S. mutans.
The TCS genes (tcs) of S. mutans were designated smtcs01-15. Mutants of S. mutans UA159 with deletions of rr and hk-rr were constructed. Acid tolerance was evaluated by comparing the doubling times at pH 7.2 and pH 5.5 between the wild-type and mutant strains.
Excluding smtcs10 and 12, for which viable mutants could not be obtained, a total of 13 rr deletion mutants were constructed. The rr deletions in smtcs03, 05, 08, and 13 resulted in diminished acid tolerance in comparison with UA159. The hk-rr double-mutants exhibited acid sensitivity levels similar to those of the corresponding rr mutants. The results of the present study reveal the involvement of the rr genes of smtcs03 and 05 in acid tolerance. Deletion of hk and/or rr in smtcs03 generated an acid-sensitive phenotype. In contrast, for smtcs05, while deletion of rr resulted in reduced acid tolerance, a single-deletion of hk had no effect on acid tolerance.
We implicated two rr genes in the acid tolerance of S. mutans. In particular, smtcs05 is a novel tcs, the sole rr of which is involved in the acid tolerance of S. mutans.
在细菌中,由组氨酸激酶基因(hk)和应答调节因子基因(rr)的产物组成的双组分系统(TCS)在适应环境变化中发挥重要作用。在变形链球菌UA159基因组数据库中鉴定出14个hk-rr同源物和1个孤儿rr同源物。尚未对rr同源物在变形链球菌耐酸性中的作用进行全面评估。
将变形链球菌的TCS基因(tcs)命名为smtcs01-15。构建了rr和hk-rr缺失的变形链球菌UA159突变体。通过比较野生型和突变株在pH 7.2和pH 5.5时的倍增时间来评估耐酸性。
除无法获得存活突变体的smtcs10和12外,共构建了13个rr缺失突变体。与UA159相比,smtcs03、05、08和13中的rr缺失导致耐酸性降低。hk-rr双突变体表现出与相应rr突变体相似的酸敏感性水平。本研究结果揭示了smtcs03和05的rr基因参与耐酸性。smtcs03中hk和/或rr的缺失产生了酸敏感表型。相比之下,对于smtcs05,虽然rr的缺失导致耐酸性降低,但hk的单缺失对耐酸性没有影响。
我们发现两个rr基因参与变形链球菌的耐酸性。特别是,smtcs05是一个新的tcs,其唯一的rr参与变形链球菌的耐酸性。