Researchers get two genetic codes to work at the same time



With these charged alternative transfer RNAs in hand, the researchers confirmed that they were ignored by normal ribosomes. But if you used a ribosome with the corresponding changes that restored base pairing, it would happily make a protein using them. So, the researchers had two different populations of transfer RNAs, each compatible with a different population of ribosomes.

They designed a separate genetic code and used the alternative transfer RNAs to implement it. They then designed a messenger RNA that could be translated by both genetic codes, but would produce different proteins depending on which code was being used. They then put together a mixture of both populations of transfer RNAs, both populations of ribosomes, and all the chemicals needed to get translation to work.

Two different proteins were produced. So, both populations of ribosomes latched onto the messenger RNA but used different populations of transfer RNAs to make a protein using the messenger. And since the two populations implemented different genetic codes, the two populations of ribosomes made different proteins.

This is really cool.

It also might be practically useful. After all, it’s extremely difficult to mess with the genetic code, because every protein in the cell depends on it. If that code keeps working happily while you mess with a second genetic code, then the cell will potentially be quite a bit happier.

Potentially. The researchers only do this work in a mixture of proteins and chemicals isolated from cells; they don’t try it in actual cells. And, to be clear, it might cause problems there. After all, the alternative ribosome would still try to translate any messenger RNAs that it comes across but will use the wrong genetic code, likely producing lots of truncated or malformed proteins. Collectively, these could interfere enough with normal processes to kill the cell.

I don’t see an obvious way around this problem. But I wasn’t clever enough to realize that having two genetic codes operating in parallel was possible, so some sharp biologist may ultimately find a way around it.

Nature, 2026. DOI: 10.1038/s41586-026-10949-y (About DOIs).



Source link

  • Related Posts

    The Meta Settlement Will Put Limits on Instagram for Teens. They’re Still Vulnerable

    Advocates for children tell WIRED that Meta’s legal settlement to address concerns about teenagers’ use of social media proposes important and overdue feature changes that invite more parental oversight than…

    Google’s Gemini has a branding problem, and so does the rest of AI

    Google gets something right in its Wednesday announcement about new Gemini Live voice features when it says, “You shouldn’t have to guess whether a task requires Spark, a Daily Brief,…

    Leave a Reply

    Your email address will not be published. Required fields are marked *

    You Missed

    After Dolly Parton’s death, Tennessee remembers its hometown hero

    After Dolly Parton’s death, Tennessee remembers its hometown hero

    7 Best Indoor Garden Systems of 2026

    7 Best Indoor Garden Systems of 2026

    NDP Leader Avi Lewis calls for export taxes on energy and critical minerals « Canada’s NDP

    NDP Leader Avi Lewis calls for export taxes on energy and critical minerals « Canada’s NDP

    Canada’s former top trade envoy warns of rockier U.S. relations ahead

    The Meta Settlement Will Put Limits on Instagram for Teens. They’re Still Vulnerable

    The Meta Settlement Will Put Limits on Instagram for Teens. They’re Still Vulnerable

    Who is covered by your credit card travel insurance?

    Who is covered by your credit card travel insurance?