Dubey Amrita, Priyadarshini Richa
Department of Life Sciences, School of Natural Sciences, Shiv Nadar University, NH91, Tehsil Dadri, Gautam Buddha Nagar, Uttar Pradesh, 201314, India.
Curr Genet. 2018 Jun;64(3):661-675. doi: 10.1007/s00294-017-0781-9. Epub 2017 Nov 22.
Bacterial cell division is a complex process brought about by the coordinated action of multiple proteins. Separation of daughter cells during the final stages of division involves cleavage of new cell wall laid down at the division septum. In E. coli, this process is governed by the action of N-acetylmuramoyl-L-alanine amidases AmiA/B/C, which are regulated by their LytM activators EnvC and NlpD. While much is known about the regulation of septum cleavage in E. coli, the mechanism of daughter cell separation is not clear in Caulobacter crescentus, a dimorphic crescent-shaped bacterium. In this work, we characterized the role of AmiC, the only annotated amidase in C. crescentus. AmiC from C. crescentus is functional in E. coli and restores cell separation defects seen in E. coli amidase mutants, suggesting that AmiC has septum splitting activity. The medial localization of AmiC was independent of DipM, an LytM domain-containing endopeptidase. Our results indicate that enzymatic activity is essential for medial recruitment of AmiC. Overexpression of AmiC causes cell separation defects and formation of chains. Finally, overexpression of AmiC in cells inhibited for cell division leads to lysis. Collectively, our findings reveal that regulation of daughter cell separation in C. crescentus differs from that of E. coli and can serve as a model system to study bacterial cytokinesis.
细菌细胞分裂是一个由多种蛋白质协同作用引发的复杂过程。在分裂的最后阶段,子细胞的分离涉及在分裂隔膜处新形成的细胞壁的裂解。在大肠杆菌中,这个过程由N - 乙酰胞壁酰 - L - 丙氨酸酰胺酶AmiA/B/C的作用控制,它们由其LytM激活剂EnvC和NlpD调节。虽然关于大肠杆菌中隔膜裂解的调控已了解很多,但在新月柄杆菌(一种双态新月形细菌)中,子细胞分离的机制尚不清楚。在这项工作中,我们表征了新月柄杆菌中唯一注释的酰胺酶AmiC的作用。新月柄杆菌的AmiC在大肠杆菌中具有功能,并能恢复大肠杆菌酰胺酶突变体中出现的细胞分离缺陷,这表明AmiC具有隔膜分裂活性。AmiC的中间定位独立于DipM(一种含LytM结构域的内肽酶)。我们的结果表明酶活性对于AmiC的中间募集至关重要。AmiC的过表达会导致细胞分离缺陷和链的形成。最后,在细胞分裂受抑制的细胞中过表达AmiC会导致细胞裂解。总体而言,我们的研究结果表明新月柄杆菌中子细胞分离的调控与大肠杆菌不同,可作为研究细菌胞质分裂的模型系统。