Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Gauteng, South Africa.
Forestry and Agricultural Biotechnology Institute, University of Pretoria, Gauteng, South Africa.
Genome Biol Evol. 2021 Mar 1;13(3). doi: 10.1093/gbe/evab024.
Two-component systems (TCS) are important types of machinery allowing for efficient signal recognition and transmission in bacterial cells. The majority of TCSs utilized by bacteria is composed of a sensor histidine kinase (HK) and a cognate response regulator (RR). In the present study, we report two newly predicted protein domains-both to be included in the next release of the Pfam database: Response_reg_2 (PF19192) and HEF_HK (PF19191)-in bacteria which exhibit high structural similarity, respectively, with typical domains of RRs and HKs. Additionally, the genes encoding for the novel predicted domains exhibit a 91.6% linkage observed across 644 genomic regions recovered from 628 different bacterial strains. The remarkable adjacent colocalization between genes carrying Response_reg_2 and HEF_HK in addition to their conserved structural features, which are highly similar to those from well-known HKs and RRs, raises the possibility of Response_reg_2 and HEF_HK constituting a new TCS in bacteria. The genomic regions in which these predicted two-component systems-like are located additionally exhibit an overrepresented presence of restriction-modification (R-M) systems especially the type II R-M. Among these, there is a conspicuous presence of C-5 cytosine-specific DNA methylases which may indicate a functional association with the newly discovered domains. The solid presence of R-M systems and the presence of the GHKL family domain HATPase_c_3 across most of the HEF_HK-containing genes are also indicative that these genes are evolutionarily related to the paraMORC family of ATPases.
双组份系统(TCS)是允许细菌细胞中有效信号识别和传输的重要类型的机器。细菌利用的大多数 TCS 由传感器组氨酸激酶(HK)和同源响应调节剂(RR)组成。在本研究中,我们报告了两个新预测的蛋白结构域——均包含在下一个 Pfam 数据库版本中:Response_reg_2(PF19192)和 HEF_HK(PF19191)——在细菌中分别与 RR 和 HK 的典型结构域具有高度结构相似性。此外,编码新预测结构域的基因在从 628 种不同细菌菌株中回收的 644 个基因组区域中表现出 91.6%的连锁。在携带 Response_reg_2 和 HEF_HK 的基因之间存在显著的相邻共定位,加上它们高度相似的保守结构特征,这些特征与知名的 HK 和 RR 非常相似,这使得 Response_reg_2 和 HEF_HK 有可能构成细菌中的新 TCS。这些预测的双组份系统所在的基因组区域还表现出限制修饰(R-M)系统的过度表达,特别是 II 型 R-M。其中,C-5 胞嘧啶特异性 DNA 甲基酶的存在尤为明显,这可能表明与新发现的结构域具有功能关联。大多数含有 HEF_HK 的基因都存在 R-M 系统和 GHKL 家族的 HATPase_c_3,这表明这些基因与 paraMORC 家族的 ATPase 在进化上具有相关性。