Murdeshwar Maya S, Chatterji Dipankar
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
J Bacteriol. 2012 Aug;194(15):4003-14. doi: 10.1128/JB.00258-12. Epub 2012 May 25.
In the noninfectious soil saprophyte Mycobacterium smegmatis, intracellular levels of the stress alarmones guanosine tetraphosphate and guanosine pentaphosphate, together termed (p)ppGpp, are regulated by the enzyme Rel(Msm). This enzyme consists of a single, bifunctional polypeptide chain that is capable of both synthesizing and hydrolyzing (p)ppGpp. The rel(Msm) knockout strain of M. smegmatis (Δrel(Msm)) is expected to show a (p)ppGpp null [(p)ppGpp(0)] phenotype. Contrary to this expectation, the strain is capable of synthesizing (p)ppGpp in vivo. In this study, we identify and functionally characterize the open reading frame (ORF), MSMEG_5849, that encodes a second functional (p)ppGpp synthetase in M. smegmatis. In addition to (p)ppGpp synthesis, the 567-amino-acid-long protein encoded by this gene is capable of hydrolyzing RNA·DNA hybrids and bears similarity to the conventional RNase HII enzymes. We have classified this protein as actRel(Msm) in accordance with the recent nomenclature proposed and have named it MS_RHII-RSD, indicating the two enzymatic activities present [RHII, RNase HII domain, originally identified as domain of unknown function 429 (DUF429), and RSD, RelA_SpoT nucleotidyl transferase domain, the SYNTH domain responsible for (p)ppGpp synthesis activity]. MS_RHII-RSD is expressed and is constitutively active in vivo and behaves like a monofunctional (p)ppGpp synthetase in vitro. The occurrence of the RNase HII and (p)ppGpp synthetase domains together on the same polypeptide chain is suggestive of an in vivo role for this novel protein as a link connecting the essential life processes of DNA replication, repair, and transcription to the highly conserved stress survival pathway, the stringent response.
在非感染性土壤腐生菌耻垢分枝杆菌中,应激警报素鸟苷四磷酸和鸟苷五磷酸(统称为(p)ppGpp)的细胞内水平由Rel(Msm)酶调节。该酶由一条单一的双功能多肽链组成,能够合成和水解(p)ppGpp。耻垢分枝杆菌的rel(Msm)基因敲除菌株(Δrel(Msm))预计会表现出(p)ppGpp缺失[(p)ppGpp(0)]表型。与这一预期相反,该菌株能够在体内合成(p)ppGpp。在本研究中,我们鉴定并对开放阅读框(ORF)MSMEG_5849进行了功能表征,该阅读框编码耻垢分枝杆菌中的第二种功能性(p)ppGpp合成酶。除了合成(p)ppGpp外,该基因编码的567个氨基酸长的蛋白质还能够水解RNA·DNA杂交体,并且与传统的核糖核酸酶HII酶有相似性。根据最近提出的命名法,我们将该蛋白质归类为actRel(Msm),并将其命名为MS_RHII-RSD,表明其具有两种酶活性[RHII,核糖核酸酶HII结构域,最初被鉴定为未知功能结构域429 (DUF429),以及RSD,RelA_SpoT核苷酸转移酶结构域,负责(p)ppGpp合成活性的SYNTH结构域]。MS_RHII-RSD在体内表达且组成型激活,在体外表现得像一种单功能(p)ppGpp合成酶。核糖核酸酶HII和(p)ppGpp合成酶结构域共同出现在同一条多肽链上,这表明这种新蛋白质在体内具有将DNA复制、修复和转录等基本生命过程与高度保守的应激生存途径——严谨反应联系起来的作用。