Search is Powered by Google
Follow us on:
Follow our health news on Twitter
Follow Our News on Facebook
Personalization
login | register
Medical Devices / Diagnostics News

Magnet Lab Researchers Make Observing Cell Functions Easier

Main Category: Medical Devices / Diagnostics
Also Included In: Biology / Biochemistry;  Genetics;  Cancer / Oncology
Article Date: 09 May 2008 - 2:00 PDT

email icon email to a friend   printer icon printer friendly   write icon view / write opinions   rate icon rate article
Current Article Ratings:

Patient / Public:not yet rated

Health Professional:4 stars

4 (1 votes)

Article Opinions: 0 posts

Now that the genome (DNA) of humans and many other organisms have been sequenced, biologists are turning their attention to discovering how the many thousands of structural and control genes -- the "worker bees" of living cells that can turn genes on and off -- function.

To do that, they need to develop new techniques and tools. Scientists in the Optical Microscopy group at the National High Magnetic Field Laboratory at Florida State University, working in collaboration with researchers from the University of Alberta in Canada and the University of California, San Diego, have done just that, and in the process have produced back-to-back articles in the prestigious journal Nature Methods.

In the first paper, magnet-lab biologists Michael Davidson and Kristin Hazelwood worked with researchers from the University of Alberta to create two new fluorescent-protein biosensors, molecular "beacons" that can tell if there is activity within a cell. The biosensors can be used simultaneously to monitor two separate dynamic functions in a single cell -- a key to understanding how different proteins and enzymes (the biomolecules that cause chemical reactions) work together to complete the daily chores that help cells grow and divide. Knowing how cells work together can help researchers learn a great deal more about tumors and developmental biology, among many other things.

The researchers improved a powerful technique used to monitor cellular dynamics called fluorescence resonance energy transfer, or FRET. The technique is used to examine a new class of biosensor molecules that tether two fluorescent proteins together through an intervening peptide (which is like a polymer). Several hundred of these new biosensors have been developed over the past few years and are being used by scientists around the world to study a variety of functions, including programmed cell death, carbohydrate metabolism, cell division, hormone stimulation, acidity changes -- just about any cellular process that can occur.

"In FRET, two molecules that are fluorescent act as 'molecular beacons' under the microscope, transferring energy between each other if they interact in the living cell," said Davidson, who directs the magnet lab's Optical Microscopy program. "With FRET, we can see that happen, but until now, we have only been able to monitor one biosensor at a time."

The new technique, called Dual FRET, is outlined in the paper "Fluorescent Protein FRET Pairs for Ratiometric Imaging of Dual Biosensors."

Further expanding the capabilities of optical microscopy, Davidson and his team worked with collaborators from the University of California, San Diego to create a new screening method for fluorescent proteins that makes them more stable under the microscope. These proteins are sensitive to light, which can bleach them out after a certain period of time. By making the proteins more stable, microscopists can observe live cell dynamics for longer periods of time. The paper describing their work, "Improving the Photostability of Bright Monomeric Orange and Red Fluorescent Proteins," was published in the May 4 online edition of Nature Methods. http://www.nature.com/nmeth/journal/v4/n9/full/nmeth1083.html

Taken together, the new technique and tool are expected to speed up experiments and expand the utility of optical microscopy by allowing two dynamic processes inside a cell to be observed at once -- and for longer periods of time.

----------------------------
Article adapted by Medical News Today from original press release.
----------------------------

The National High Magnetic Field Laboratory develops and operates state-of-the-art, high-magnetic-field facilities that faculty and visiting scientists and engineers use for research. The laboratory, which is operated by a consortium composed of Florida State University, the University of Florida and Los Alamos National Laboratory, is sponsored by the National Science Foundation and the state of Florida. To learn more, visit http://www.magnet.fsu.edu/.

Source: Michael Davidson
Florida State University




Personalized Homepage Weekly Newsletters Daily News Alerts
Hemophilia Opioid Induced Constipation Pneumococcal Disease ADHD Anxiety Asthma Atrial Fibrillation Autism Cancer Diabetes Lung Cancer Lupus Medicare / Medicaid Obesity and BMI Pancreatic Cancer Stem Cells All 'What Is...' Articles

Ophthalmology Urology
About Us News Licensing Free Website Feeds Free Tools & Content Tell a Friend Accessibility Help / FAQ Article Submission Links Contact Us

add medical news today to your facebook
medical news gadget

Please fill in our survey

Swine Flu Image

Swine Flu Updates

- Latest Swine Flu News
- What is Swine Flu?
- Map Of H1N1 Outbreaks
- Swine Flu - Top 20 FAQ
- Daily Email News Alerts
Stick with Medical News Today for the latest news updates on swine flu.


These are the most read articles from this news category for the last 6 months:
Top Article Star
What Is Dialysis? What Is Kidney Dialysis?
07 Jun 2009
Dialysis is the artificial process of getting rid of waste (diffusion) and unwanted water (ultrafiltration) from the blood. This process is naturally done by our kidneys. Some people, however, may have failed or damaged...


Keeping Bacteria from Cross Contaminating Your Food
Keeping Bacteria from Cross Contaminating Your Food

Raw meat, poultry and seafood can contain harmful bacteria. To keep them from spreading to other food, it's important to keep raw perishables separate from ready to eat foods.

more videos are available in our health videos section.