stringent response /lab/aaron-whiteley/ en (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes. /lab/aaron-whiteley/2020/08/25/pppgpp-and-c-di-amp-homeostasis-controlled-cbpb-listeria-monocytogenes <span>(p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes.</span> <span><span>Anonymous (not verified)</span></span> <span><time datetime="2020-08-25T09:00:00-06:00" title="Tuesday, August 25, 2020 - 09:00">Tue, 08/25/2020 - 09:00</time> </span> <div> <div class="imageMediaStyle focal_image_wide"> <img loading="lazy" src="/lab/aaron-whiteley/sites/default/files/styles/focal_image_wide/public/article-thumbnail/screen_shot_2020-10-23_at_5.15.52_pm_0.png?h=53a7ee59&amp;itok=OwzBvB7M" width="1200" height="600" alt="Model Figure"> </div> </div> <div role="contentinfo" class="container ucb-article-tags" itemprop="keywords"> <span class="visually-hidden">Tags:</span> <div class="ucb-article-tag-icon" aria-hidden="true"> <i class="fa-solid fa-tags"></i> </div> <a href="/lab/aaron-whiteley/taxonomy/term/239" hreflang="en">bacteria</a> <a href="/lab/aaron-whiteley/taxonomy/term/241" hreflang="en">cyclic dinucleotide</a> <a href="/lab/aaron-whiteley/taxonomy/term/243" hreflang="en">stringent response</a> </div> <span>Peterson BN</span> <span>Young MKM</span> <span>Luo S</span> <span>Wang J</span> <span>➤Whiteley AT</span> <span>Woodward JJ</span> <span>Tong L</span> <span>Wang JD</span> <span>Portnoy DA</span> <div class="ucb-article-content ucb-striped-content"> <div class="container"> <div class="paragraph paragraph--type--article-content paragraph--view-mode--default"> <div class="ucb-article-content-media ucb-article-content-media-above"> <div> <div class="paragraph paragraph--type--media paragraph--view-mode--default"> <div> <div class="imageMediaStyle large_image_style"> <img loading="lazy" src="/lab/aaron-whiteley/sites/default/files/styles/large_image_style/public/article-image/screen_shot_2020-10-23_at_5.15.52_pm.png?itok=QF1o4DE0" width="1500" height="883" alt="Model Figure"> </div> </div> </div> </div> </div> <div class="ucb-article-text d-flex align-items-center" itemprop="articleBody"> <div><p>&nbsp;<em>mBio</em> 2020 Aug 25;11(4):e01625-20.&nbsp;doi: 10.1128/mBio.01625-20.</p> <h2>Abstract</h2> <p>The facultative intracellular pathogen&nbsp;<i>Listeria monocytogenes</i>, like many related&nbsp;<i>Firmicutes</i>, uses the nucleotide second messenger cyclic di-AMP (c-di-AMP) to adapt to changes in nutrient availability, osmotic stress, and the presence of cell wall-acting antibiotics. In rich medium, c-di-AMP is essential; however, mutations in&nbsp;<i>cbpB</i>, the gene encoding c-di-AMP binding protein B, suppress essentiality. In this study, we identified that the reason for&nbsp;<i>cbpB</i>-dependent essentiality is through induction of the stringent response by RelA. RelA is a bifunctional RelA/SpoT homolog (RSH) that modulates levels of (p)ppGpp, a secondary messenger that orchestrates the stringent response through multiple allosteric interactions. We performed a forward genetic suppressor screen on bacteria lacking c-di-AMP to identify genomic mutations that rescued growth while&nbsp;<i>cbpB</i>was constitutively expressed and identified mutations in the synthetase domain of RelA. The synthetase domain of RelA was also identified as an interacting partner of CbpB in a yeast-2-hybrid screen. Biochemical analyses confirmed that free CbpB activates RelA while c-di-AMP inhibits its activation. We solved the crystal structure of CbpB bound and unbound to c-di-AMP and provide insight into the region important for c-di-AMP binding and RelA activation. The results of this study show that CbpB completes a homeostatic regulatory circuit between c-di-AMP and (p)ppGpp in&nbsp;<i>Listeria monocytogenes</i></p> <p>IMPORTANCE&nbsp;Bacteria must efficiently maintain homeostasis of essential molecules to survive in the environment. We found that the levels of c-di-AMP and (p)ppGpp, two nucleotide second messengers that are highly conserved throughout the microbial world, coexist in a homeostatic loop in the facultative intracellular pathogen&nbsp;<i>Listeria monocytogenes</i>&nbsp;Here, we found that cyclic di-AMP binding protein B (CbpB) acts as a c-di-AMP sensor that promotes the synthesis of (p)ppGpp by binding to RelA when c-di-AMP levels are low. Addition of c-di-AMP prevented RelA activation by binding and sequestering CbpB. Previous studies showed that (p)ppGpp binds and inhibits c-di-AMP phosphodiesterases, resulting in an increase in c-di-AMP. This pathway is controlled via direct enzymatic regulation and indicates an additional mechanism of ribosome-independent stringent activation.</p> <h2><strong>Keywords</strong></h2> <p>bacteria; cyclic dinucleotide; stringent response</p> <h2>Links</h2> <ul> <li>PMID:&nbsp;32843560</li> <li>DOI:&nbsp;<a href="https://doi.org/10.1128/mbio.01625-20" target="_blank" rel="nofollow">10.1128/mBio.01625-20</a>&nbsp;</li> </ul></div> </div> </div> </div> </div> <div>Peterson BN, Young MKM, Luo S, Wang J, ➤Whiteley AT, Woodward JJ, Tong L, Wang JD, Portnoy DA. | mBio. 2020</div> <div>Traditional</div> <div>0</div> <div>On</div> <div>White</div> Tue, 25 Aug 2020 15:00:00 +0000 Anonymous 117 at /lab/aaron-whiteley