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Hiển thị các bài đăng có nhãn Synthetic. Hiển thị tất cả bài đăng

Thứ Sáu, 27 tháng 1, 2017

First stable semisynthetic organism created

Professor Floyd Romesberg (right) and Graduate Student Yorke Zhang led the new study at The Scripps Research Institute, along with Brian Lamb (not pictured).Credit: The Scripps Research Institute (Photo by Madeline McCurry-Schmidt.)

Scientists have announced the development of the first stable semisynthetic organism.



Life's genetic code has only ever contained four natural bases. These bases pair up to form two "base pairs" -- the rungs of the DNA ladder -- and they have simply been rearranged to create bacteria and butterflies, penguins and people. Four bases make up all life as we know it.

Until now Scientists at The Scripps Research Institute (TSRI) have announced the development of the first stable semisynthetic organism. Building on their 2014 study in which they synthesized a DNA base pair, the researchers created a new bacterium that uses the four natural bases (called A, T, C and G), which every living organism possesses, but that also holds as a pair two synthetic bases called X and Y in its
genetic code.

TSRI Professor Floyd Romesberg and his colleagues have now shown that their single-celled organism can hold on indefinitely to the synthetic base pair as it divides. Their research was published January 23, 2017, online ahead of print in the journal Proceedings of the National Academy of Sciences.



"We've made this semisynthetic organism more life-like," said Romesberg, senior author of the new study.

While applications for this kind of organism are still far in the future, the
researchers say the work could be used to create new functions for single-celled organisms that play important roles in drug discovery and much more.

Building a Unique Organism
When Romesberg and his colleagues announced the development of X and Y in 2014, they also showed that modified E. coli bacteria could hold this synthetic base pair in their genetic code. What these E. coli couldn't do, however, was keep the base pair in their code indefinitely as they divided. The X and Y base pair was dropped over time, limiting the ways the organism could use the additional information possessed in their DNA.

"Your genome isn't just stable for a day," said Romesberg. "Your genome has to be stable for the scale of your lifetime. If the semisynthetic organism is going to really be an organism, it has to be able to stably maintain that information."
Romesberg compared this flawed organism to an infant. It had some learning to do before it was ready for real life.



In stepped TSRI Graduate Student Yorke Zhang and Brian Lamb, an American Cancer Society postdoctoral fellow in the Romesberg lab at the time of the study. Together, they helped develop the means for the single-celled organism to retain the artificial base pair.

First, Zhang and Lamb, co-first authors of the study, optimized a tool called a nucleotide transporter, which brings the materials necessary for the unnatural base pair to be copied across the cell membrane. "The transporter was used in the 2014 study, but it made the semisynthetic organism very sick," Zhang explained. The researchers discovered a modification to the transporter that alleviated this problem, making it much easier for the organism to grow and divide while holding on to X and Y.

Next, the researchers optimized their previous version of Y. The new Y was a chemically different molecule that could be better recognized by the enzymes that synthesize DNA molecules during DNA replication. This made it easier for cells to copy the synthetic base pair.

A New Use for CRISPR-Cas9
Finally, the researchers set up a "spell check" system for the organism using CRISPR-Cas9, an increasingly popular tool in human genome editing experiments. But instead of editing a genome, the researchers took advantage of CRISPR-Cas9's original role in bacteria.

The genetic tools in CRISPR-Cas9 (a DNA segment and an enzyme) originated in bacteria as a kind of immune response. When a bacterium encounters a threat, like a virus, it takes fragments of the invader genome and pastes them into its own genome -- a bit like posting a "wanted" poster on the off chance it sees the invader again. Later, it can use those pasted genes to direct an enzyme to attack if the invader returns.

Knowing this, the researchers designed their organism to see a genetic sequence without X and Y as a foreign invader. A cell that dropped X and Y would be marked for destruction, leaving the scientists with an organism that could hold on to the new bases. It was like the organism was immune to unnatural base pair loss.



"We were able to address the problem at a fundamental level," said Lamb, who now serves as a research scientist at Vertex Pharmaceuticals.

Their semisynthetic organism was thus able to keep X and Y in its genome after dividing 60 times, leading the researchers to believe it can hold on to the base pair indefinitely.

"We can now get the light of life to stay on," said Romesberg. "That suggests that all of life's processes can be subject to manipulation."

A Foundation for Future Research
Romesberg emphasized that this work is only in single cells and is not meant to be used in more complex organisms. He added that the actual applications for this semisynthetic organism are "zero" at this point. So far, scientists can only get the organism to store genetic information.

Next, the researchers plan to study how their new genetic code can be transcribed into RNA, the molecule in cells needed to translate DNA into proteins. "This study lays the foundation for what we want to do going forward," said Zhang.
Story Source: Scripps Research Institute

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Thứ Hai, 16 tháng 1, 2017

Meditation in virtual reality: When Philosophy and the Business of Synthetic Technology meet

There’s no paradox in finding your true self via virtual reality because everyday reality is a simulation, says self-help guru Deepak Chopra of his latest venture



The cosmos swirls, wisps of purple, yellow and orange light flickering across the darkness of space, then across the visage of Buddha. An otherworldly plain fills the horizon, framed by the branches of a tree – the tree of enlightenment.

A familiar voice intrudes. “What or who is having this experience right this moment, right now?” Pause. “It is your own being. It is your innermost being that is having the experience, your true self.”

The voice continues. “Live here, with no regrets, no anticipation, no resistance, and you will be free. Freedom is always now. Being is now.”



Even if you enjoy psychedelic animation graphics you may struggle to live here, however, because visits last just 20 minutes and they are not real, not free and not quite now.
Welcome – if you have the headset or appropriate app – to Deepak Chopra’s latest venture: virtual reality (VR) meditation.

The new age entrepreneur and self-help guru unveiled the simulation, titled “Finding your true self”, this week at the headquarters of Wevr, a VR firm in Silicon Beach, Los Angeles’ tech hub.

Chopra, who narrates the simulation, hopes to sell the experience via booths at airports, hospitals and other locations, and via phones and laptops enabled with VR platforms.
“In 20 minutes you get a journey to enlightenment. The goal is to feel grounded and understand yourself a little better,” he told the Guardian. The technology, he said, facilitated an understanding of consciousness which eluded even René Descartes, the 17th century French philosopher. “He was good for his time but didn’t have VR to take it to the next level.”
A bold claim for a nascent technology more associated with gaming and pornography than reflection and contemplation. But Chopra, 68, has not built a lucrative brand and sold millions of books such as The Seven Spiritual Laws of Success through timidity.



Meditation’s benefits – improved focus, lower stress, inner peace – require investments of time, effort and discipline which frustrate many would-be practitioners. A vast market, Chopra hopes for a simulation which mixes “insights, contemplation and entertainment”.

Meditation purists may wonder if that is cheating. Those who simply wonder if it works will be able to find out when the product launches, perhaps in a few weeks. “Soon, very soon,” said Anthony Batt, Wevr’s co-founder. The app will cost $10, he said.

For that, according to a three-minute trailer shown to the Guardian and others at the company’s headquarters, you get trippy graphics, heavy on purple, with otherworldly sound effects laid over statements which, depending on perspective, are insightful, gnomic or nonsense.

There was no paradox between finding your true self via virtual reality because everyday reality is itself a simulation, said Chopra. An insect with 100 eyes, for instance, views the world differently than a human.

“For 30 years people have been coming to my lectures saying they don’t get it. Well now they can.”

Asked if the simulation tried to cross Descartes, who coined the maxim “I think, thefore I am,” with the science fiction film The Matrix, Chopra beamed. “Absolutely!”



The simulation features the Bodhi tree under which Buddha is said to have sat.
The project is the brainchild of Chopra’s son, Gotham, a Los Angeles film-maker. “I’ve been hearing my father talk about simulation for 30 years. I realized this would be a tool for him.”

Earlier versions featuring water were discarded for an impressionistic interpretation of the Bodhi tree in eastern India under which Buddha is said to have sat around 500 BC, seeking and eventually finding enlightenment. “We wanted to replicate that,” said Gotham.

Designers worked on the project at Wevr’s headquarters, a Frank Gehry-designed house where Dennis Hopper lived, partied and encountered his own virtual reality through alcohol and drugs.

Strapping on a headset or peering at a computer screen, were not inimical to contemplation, said Chopra. “I’ve never been too attached to tradition. We’re an evolving species. If you don’t keep up with technology you’re not in touch with the zeitgeist and you may as well pack it in.”
Source Rory Carroll, Los Angeles

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