探花直播 of Cambridge - 探花直播 of Illinois Urbana-Champaign /taxonomy/external-affiliations/university-of-illinois-urbana-champaign en DNA enzyme shuffles cell membranes a thousand times faster than its natural counterpart /research/news/dna-enzyme-shuffles-cell-membranes-a-thousand-times-faster-than-its-natural-counterpart <div class="field field-name-field-news-image field-type-image field-label-hidden"><div class="field-items"><div class="field-item even"><img class="cam-scale-with-grid" src="/sites/default/files/styles/content-580x288/public/news/research/news/crop_82.jpg?itok=avb_UeYo" alt="DNA scramblase" title="DNA scramblase, Credit: Aleksei Aksimentiev" /></div></div></div><div class="field field-name-body field-type-text-with-summary field-label-hidden"><div class="field-items"><div class="field-item even"><p>Researchers at the 探花直播 of Cambridge and the 探花直播 of Illinois at Urbana-Champaign say their lipid-scrambling DNA enzyme is the first to outperform naturally occurring enzymes 鈥 and does so by three orders of magnitude. Their <a href="https://dx.doi.org/10.1038/s41467-018-04821-5">findings</a> are published in the journal <em>Nature Communications</em>.</p>&#13; &#13; <p>鈥淐ell membranes are lined with a different set of molecules on the inside and outside, and cells devote a lot of resources to maintaining this,鈥 said study leader <a href="https://physics.illinois.edu/people/directory/profile/aksiment">Aleksei Aksimentiev</a>, a professor of physics at Illinois. 鈥淏ut at some points in a cell鈥檚 life, the asymmetry has to be dismantled. Then the markers that were inside become outside, which sends signals for certain processes, such as cell death. There are enzymes in nature that do that called scramblases. However, in some other diseases where scramblases are deficient, this doesn鈥檛 happen correctly. Our synthetic scramblase could be an avenue for therapeutics.鈥</p>&#13; &#13; <p>Aksimentiev鈥檚 <a href="http://bionano.physics.illinois.edu/">group</a> came upon DNA鈥檚 scramblase activity when looking at DNA structures that form pores and channels in cell membranes. They used the Blue Waters supercomputer at the <a href="https://www.ncsa.illinois.edu/">National Center for Supercomputing Applications</a> at Illinois to model the systems at the atomic level. They saw that when certain DNA structures insert into the membrane 鈥 in this case, a bundle of eight strands of DNA with cholesterol at the ends of two of the strands 鈥 lipids in the membrane around the DNA begin to shuffle between the inner and outer membrane layers.</p>&#13; &#13; <p>To verify the scramblase activity predicted by the computer models, Aksimentiev鈥檚 group at Illinois partnered with Professor <a href="https://www.phy.cam.ac.uk/directory/keyseru">Ulrich Keyser鈥檚</a> group at Cambridge. 探花直播Cambridge group synthesised the DNA enzyme and tested it in model membrane bubbles, called vesicles, and then in human breast cancer cells.</p>&#13; &#13; <p>鈥 探花直播results show very conclusively that our DNA nanostructure facilitates rapid lipid scrambling,鈥 said co-first author Alexander Ohmann, a PhD student in Keyser鈥檚 group in Cambridge鈥檚 Cavendish Laboratory. 鈥淢ost interestingly, the high flipping rate indicated by the molecular dynamics simulations seems to be of the same order of magnitude in experiments: up to a thousand-fold faster than what has previously been shown for natural scramblases.鈥</p>&#13; &#13; <p>On its own, the DNA scramblase produces cell death indiscriminately, said Aksimentiev. 探花直播next step is to couple it with targeting systems that specifically seek out certain cell types, a number of which have already been developed for other DNA agents.</p>&#13; &#13; <p>鈥淲e are also working to make these scramblase structures activated by light or some other stimulus, so they can be activated only on demand and can be turned off,鈥 said Aksimentiev.</p>&#13; &#13; <p>鈥淎lthough we have still a long way to go, this work highlights the enormous potential of synthetic DNA nanostructures with possible applications for personalised drugs and therapeutics for a variety of health conditions in the future,鈥 said Ohmann, who has also written a <a href="https://communities.springernature.com/posts/outperforming-nature-using-dna-nanotechnology">blog post</a> on their new paper.</p>&#13; &#13; <p> 探花直播US National Science Foundation and the National Institutes of Health supported this work.聽聽</p>&#13; &#13; <p><strong><em>Reference: </em></strong><br /><em>Alexander Ohmann et al. 鈥<a href="https://dx.doi.org/10.1038/s41467-018-04821-5">A synthetic enzyme built from DNA flips 10<sup>7</sup> lipids per second in biological membranes</a>.鈥 Nature Communications (2018). DOI: 10.1038/s41467-018-04821-5</em></p>&#13; &#13; <p><em>鈥婣dapted from a 探花直播 of Illinois at Urbana-Champaign <a href="https://news.illinois.edu/dna-enzyme-shuffles-cell-membranes-a-thousand-times-faster-than-its-natural-counterpart/">press release</a>.</em></p>&#13; </div></div></div><div class="field field-name-field-content-summary field-type-text-with-summary field-label-hidden"><div class="field-items"><div class="field-item even"><p><p>A new synthetic enzyme, crafted from DNA rather than protein, 鈥榝lips鈥 lipid molecules within the cell membrane, triggering a signal pathway that could be harnessed to induce cell death in cancer cells.</p>&#13; </p></div></div></div><div class="field field-name-field-content-quote field-type-text-long field-label-hidden"><div class="field-items"><div class="field-item even">This work highlights the enormous potential of synthetic DNA nanostructures for personalised drugs and therapeutics for a variety of health conditions.</div></div></div><div class="field field-name-field-content-quote-name field-type-text field-label-hidden"><div class="field-items"><div class="field-item even">Alexander Ohmann</div></div></div><div class="field field-name-field-image-credit field-type-link-field field-label-hidden"><div class="field-items"><div class="field-item even"><a href="/" target="_blank">Aleksei Aksimentiev</a></div></div></div><div class="field field-name-field-image-desctiprion field-type-text field-label-hidden"><div class="field-items"><div class="field-item even">DNA scramblase</div></div></div><div class="field field-name-field-cc-attribute-text field-type-text-long field-label-hidden"><div class="field-items"><div class="field-item even"><p><a href="http://creativecommons.org/licenses/by/4.0/" rel="license"><img alt="Creative Commons License" src="https://i.creativecommons.org/l/by/4.0/88x31.png" style="border-width:0" /></a><br />&#13; 探花直播text in this work is licensed under a <a href="http://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International License</a>. Images, including our videos, are Copyright 漏 探花直播 of Cambridge and licensors/contributors as identified.聽 All rights reserved. We make our image and video content available in a number of ways 鈥 as here, on our <a href="/">main website</a> under its <a href="/about-this-site/terms-and-conditions">Terms and conditions</a>, and on a <a href="/about-this-site/connect-with-us">range of channels including social media</a> that permit your use and sharing of our content under their respective Terms.</p>&#13; </div></div></div><div class="field field-name-field-show-cc-text field-type-list-boolean field-label-hidden"><div class="field-items"><div class="field-item even">Yes</div></div></div><div class="field field-name-field-related-links field-type-link-field field-label-above"><div class="field-label">Related Links:&nbsp;</div><div class="field-items"><div class="field-item even"><a href="https://communities.springernature.com/posts/outperforming-nature-using-dna-nanotechnology">"Behind the paper" blog entry by Alexander Ohmann</a></div></div></div> Thu, 21 Jun 2018 11:23:25 +0000 sc604 198302 at