Forum for Science, Industry and Business
Sponsored by:     Siemens     3M    n-tv
Search our Site:

Topic (optional):

 

Home Reports Life Sciences Content

MicroRNAs in plants: Regulation of the regulator

next article
09.11.2012

A phosphate switch to fine-tune the protein production in the cells

 

MicroRNAs are essential regulators of the genetic program in multicellular organisms. Because of their potent effects, the production of these small regulators has itself to be tightly controlled.


That is the key finding of a new study performed by Tübingen scientists at the Max Planck Institute for Developmental Biology. They identified a new component that modulates the production of micro RNAs in thale cress, Arabidopsis thaliana, by the removal of phosphate residues from a micro RNA-biogenesis enzyme. This can be as quick as the turn of a switch, allowing the plant to adapt to changing conditions. In this study, the scientists combined advanced imaging for facile detection of plants with defective microRNA activity with whole genome sequencing for rapid identification of new mutations.

The cell seems to thwart itself: Reading the DNA, a mobile messenger RNA is produced in the cell nucleus, exported to the cytoplasm where it serves as a blueprint for the production of proteins. At the same time, the cell is able to produce micro RNAs that, by binding to specific messenger RNAs, can block protein production or even initiate its destruction. But why does the cell start a costly process and immediately stops it? "Well, the answer lies on the fine balance the cell has to achieve between producing a protein and avoid having an excess of it. Reaching the right level of a protein and its adequate temporal and spatial distribution requires, sometimes, opposed forces," says Pablo Manavella, first author of the study and postdoc in the department of Detlef Weigel at the Max Planck Institute for Developmental Biology. "Once the transcript of the messenger RNA is activated it is quite stable. If you need a quick stop, regulatory mechanisms, such as the micro RNAs, will be able to hold up the process," he explains. The study was carried out in collaboration with scientists from the Center for Plant Molecular Biology (ZMBP) and the Proteome Center of the University of Tübingen.

The production of micro RNAs from its precursors has already been extensively studied, especially in animal cells. "Micro RNAs in plants have evolved in parallel and independently. We had to assume that they could be processed in a different way," Pablo Manavella explains.

The scientists used a methodical trick to study the activity of micro RNAs in cells of thale cress plants. First, they developed a reporter system based on the bioluminescent protein luciferase from firefly; its DNA was integrated in the plant cells. Secondly, the scientists inserted in the plant genome a fragment of DNA containing a precursor of an artificial micro RNA that specifically inhibits luciferase. These plants thus initially showed no light emission despite containing the genes encoding luciferase. In a mass experiment, the scientists then triggered unspecific mutations in thousands of plants. With the aid of a special hypersensitive camera the few shining plants were sorted out. "In all these individuals some part of the micro RNA pathway must have been damaged so that luciferase was no longer silenced by the artificial micro RNA," says Pablo Manavella.

To identify the genes responsible for the failure in silencing luciferase, the scientists made use of a new technology developed at the Max Planck Institute, which enables the rapid detection of causal mutations by whole-genome sequence analysis. "Just a few years ago, this project would have been difficult to complete within two years. Nowadays, whole genome sequencing is a rapid and affordable method. By combining the screening test on luciferase activity with whole genome sequencing we could reduce the study period from years to several months," Pablo Manavella explains. Among the obtained mutants the scientists identified the phosphatase CPL1 as a key component of the microRNA biogenesis pathway. This protein modulates the production of these molecules by removing phosphate residues from HYL1, one of the main co-factors in the pathway, impairing the production of micro RNAs. Once produced these micro RNAs will bind to the corresponding messenger RNAs stopping the production of the protein.

"We have identified one factor able to regulate the activity of the regulators," Pablo Manavella summarizes their results. Micro RNAs represent only one of the of genetic regulation mechanisms among many others; however, in the manner of a switch they provide quick and efficient answers to changing requirements, for example in many developmental processes. In general, micro RNAs in plants are much more specific than in animals, the scientists say. "Plants cannot run away when facing a stressful condition. Therefore they need quick ways to regulate its genes in order to adapt to such situations."

Contact
Dr. Pablo Manavella
Max Planck Institute for Developmental Biology, Tübingen
Phone: +49 7071 601-1405
Email: pablo.manavella@­tuebingen.mpg.de

Prof. Dr. Detlef Weigel
Max Planck Institute for Developmental Biology, Tübingen
Phone: +49 7071 601-1410
Email: detlef.weigel@­tuebingen.mpg.de

Janna Eberhardt
Max Planck Institute for Developmental Biology, Tübingen
Phone: +49 7071 601-444
Fax: +49 7071 601-359
Email: presse-eb@­tuebingen.mpg.de

Original publication
Pablo A. Manavella, Jörg Hagmann, Felix Ott, Sascha Laubinger, Mirita Franz, Boris Macek, Detlef Weigel
Fast-forward genetics identifies plant CPL phosphatases as regulators of miRNA processing factor HYL 1
Cell, Vol. 151, 4

Dr. Pablo Manavella | Source: EurekAlert!
Further information:
www.mpg.de/6616426/micro-RNAs-plants

next article

More articles from Life Sciences:

nachricht New way to improve antibiotic production
18.06.2013 | Norwich BioScience Institutes

nachricht Missing enzyme linked to drug addiction
18.06.2013 | The Endocrine Society

All articles from Life Sciences >>>
The most recent press releases about innovation >>>

Overview of the latest five Focus news of the innovations-report:
In the focus: EADCO and PC-Aero present at the Paris Airshow for the first time the full electric 6 seats ....

... two engines aircraft project “Elektro E6”.

The countdown has been started for opening the gates again for the worldwide leading aviation and space event in Le Bourget, Paris from June 17th - 23rd, 2013.

EADCO & PC-Aero will present at the Paris Air Show in Hall H4 booth F-7 their new future aircraft and innovative project: ...

In the focus: Ceramic Transformer Integrates Power Supply Unit

Siemens scientists have developed new kinds of ceramics in which they can embed transformers.

The new development allows power supply transformers to be reduced to one fifth of their current size so that the normally separate switched-mode power supply units of light-emitting diodes can be integrated into the module's heat sink.

The new technology was developed in cooperation with industrial and research partners who ...

In the focus: Nanoparticle Opens the Door to Clean-Energy Alternatives

Cheaper clean-energy technologies could be made possible thanks to a new discovery.

Led by Raymond Schaak, a professor of chemistry at Penn State University, research team members have found that an important chemical reaction that generates hydrogen from water is effectively triggered -- or catalyzed -- by a nanoparticle composed of nickel and phosphorus, two inexpensive elements that are abundant on Earth. ...

In the focus: Fraunhofer ILT heads toward digital photonic production

The Fraunhofer Institute for Laser Technology ILT generated a lot of interest at the LASER World of Photonics 2013 trade fair with its numerous industrial laser technology innovations.

Its highlights included beam sources and manufacturing processes for ultrashort laser pulses as well as ways to systematically optimize machining processes using computer simulations. There was even a specialist booth at the fair dedicated to the revolutionary technological potential of digital photonic production.

Now in its fortieth year, LASER World ...

In the focus: New quantum dot technique combines best of optical and electron microscopy

It's not reruns of "The Jetsons", but researchers working at the National Institute of Standards and Technology (NIST) have developed a new microscopy technique that uses a process similar to how an old tube television produces a picture—cathodoluminescence—to image nanoscale features.

Combining the best features of optical and scanning electron microscopy, the fast, versatile, and high-resolution technique allows scientists to view surface and subsurface features potentially as small as 10 nanometers in size.

The new microscopy technique, described in the journal AIP Advances,* uses a beam of electrons to excite a specially ...

All Focus news of the innovations-report >>>

B2B Search

Product / Service
Company / Organisation

Latest News

Printing artificial bone

18.06.2013 | Materials Sciences

Artificial Sweetener a Potential Treatment for Parkinson's Disease

18.06.2013 | Health and Medicine

New way to improve antibiotic production

18.06.2013 | Life Sciences

VideoLinks
B2B-VideoLinks
More VideoLinks >>>

Event News

International Symposium on Morphogenesis

14.06.2013 | Event News

ESMT Annual Forum: CEOs discuss “The Future of Jobs” with international academics and policymakers

13.06.2013 | Event News

Invitation: Mathematics for Industry and Society in the French Embassy Berlin, 04. - 05.07.2013

10.06.2013 | Event News