Sajish Mathew, Kalayil Sissy, Verma Sunil Kumar, Nandicoori Vinay Kumar, Prakash Balaji
Department of Biological Sciences and Bioengineering, Indian Institute of Technology, Kanpur 208016, India.
J Biol Chem. 2009 Apr 3;284(14):9115-23. doi: 10.1074/jbc.M807187200. Epub 2009 Feb 6.
Monofunctional and bifunctional classes of Rel proteins catalyze pyrophosphoryl transfer from ATP to 3'-OH of GTP/GDP to synthesize (p)ppGpp, which is essential for normal microbial physiology and survival. Bifunctional proteins additionally catalyze the hydrolysis of (p)ppGpp. We have earlier demonstrated that although both catalyze identical the (p)ppGpp synthesis reaction, they exhibit a differential response to Mg(2+) due to a unique charge reversal in the synthesis domain; an RXKD motif in the synthesis domain of bifunctional protein is substituted by an EXDD motif in that of the monofunctional proteins. Here, we show that these motifs also determine substrate specificities (GTP/GDP), cooperativity, and regulation of catalytic activities at the N-terminal region through the C-terminal region. Most importantly, a mutant bifunctional Rel carrying an EXDD instigates a novel catalytic reaction, resulting in the synthesis of pGpp by an independent hydrolysis of the 5'P(alpha)-O-P(beta) bond of GTP/GDP or (p)ppGpp. Further experiments with RelA from Escherichia coli wherein EXDD is naturally present also revealed the presence of pGpp, albeit at low levels. This work brings out the biological significance of RXKD/EXDD motif conservation in Rel proteins and reveals an additional catalytic activity for the monofunctional proteins, prompting an extensive investigation for the possible existence and role of pGpp in the biological system.
Rel蛋白的单功能和双功能类别催化焦磷酸从ATP转移至GTP/GDP的3'-OH以合成(p)ppGpp,这对正常微生物生理和存活至关重要。双功能蛋白还催化(p)ppGpp的水解。我们先前已证明,尽管两者都催化相同的(p)ppGpp合成反应,但由于合成结构域中独特的电荷反转,它们对Mg(2+)表现出不同的反应;双功能蛋白合成结构域中的RXKD基序被单功能蛋白合成结构域中的EXDD基序取代。在此,我们表明这些基序还通过C端区域决定底物特异性(GTP/GDP)、协同性以及N端区域催化活性的调节。最重要的是,携带EXDD的突变双功能Rel引发了一种新的催化反应,通过独立水解GTP/GDP或(p)ppGpp的5'P(α)-O-P(β)键合成pGpp。对天然存在EXDD的大肠杆菌RelA进行的进一步实验也揭示了pGpp的存在,尽管含量很低。这项工作揭示了Rel蛋白中RXKD/EXDD基序保守性的生物学意义,并揭示了单功能蛋白的一种额外催化活性,促使人们广泛研究pGpp在生物系统中可能的存在和作用。