(Press-News.org) Cold Spring Harbor, N.Y. – As the body ages, the physical effects are notable; wrinkles in the skin appear, physical exertion becomes harder. But there are also less visible processes going on. Inside aging brains there is another phenomenon at work, which may contribute to age-related brain defects.
In a paper [http://dx.doi.org/10.1038/nn.3368] published in the journal Nature Neuroscience CSHL Associate Professor Joshua Dubnau [http://www.cshl.edu/Faculty/dubnau-joshua.html] and colleagues show that so-called "jumping genes," or transposons, increase in abundance and activity in the brains of fruit flies as they age.
Originally discovered at CSHL by Professor Barbara McClintock while working on maize (corn) in the 1940s, transposons are typically repeat DNA sequences that insert themselves into the DNA of an animal or plant.
The moniker "jumping genes" comes from the fact that when activated they can reinsert themselves, or transpose, into another part of the genome. In the course of doing so they are thought to either provide variations in genetic function or, especially in the germline, induce potentially fatal disruptive defects.
Jumping genes in the brains of fruit flies
The lifespan of a fruit fly can be measured in days. The average fly lives for somewhere between 40-50 days. But they provide a powerful model with which to get at the genetics of things like aging and brain function, including memory.
Dubnau's interest was piqued by an experiment in which his team showed that when the activity of a protein called Ago2 (Argonaute 2) was perturbed, so was long-term memory—which was tested using a trained Pavolvian response to smell. "This is a neurodegenerative defect that gets profoundly more apparent with age of the flies," notes Dubnau.
Since Ago2 is known to be involved in protecting against transposon activity in fruit flies, Dubnau and colleagues in his lab, including Wanhe Li and Lisa Prazak, were compelled to look for transposons.
Though transposons have been shown to be active during normal brain development, they are silenced soon afterward. The implication is that they have some functional role in development.
When Dubnau's group looked for transposons they found that there is a marked increase in transposon levels in the brain cells, or neurons, by 21 days of age in normal fruit flies. The levels were observed to increase steadily with age. These transposons, including one in particular called gypsy, were highly active, jumping from place to place in the genome.
When they blocked Ago2 from being expressed in fruit flies, transposons accumulated at a much younger age. In fact the levels of transposons in young Ago2 "knock-out" flies were equivalent to those in much older normal flies, and increased further still as the Ago2 knock-out flies aged.
Accompanying this transposon accumulation were defects in long-term memory that mirrored those usually seen in much older flies, as well as a much-reduced lifespan. "Essentially the Ago2 knock out flies have no long-term memory by the time they are 20 days old, while normal flies have a normal long-term memory at the same age," Dubnau reports.
In a previous paper [http://www.plosone.org/article/info:doi/10.1371/journal.pone.0044099] the Dubnau lab, in collaboration with CSHL Assistant Professor Molly Hammell, established a connection between transposons and devastating neurodegenerative diseases such ALS (amyotrophic lateral sclerosis, or Lou Gehrig's disease) and FTLD (frontotemporal lobar degeneration). The link was the protein TDP-43, which they showed controls transposon activity [http://www.cshl.edu/Article-Dubnau/storm-of-awakened-transposons-may-cause-brain-cell-pathologies-in-als-other-neurodegenerative-ill].
Taken together with the results in his team's new paper, Dubnau proposes that a "transposon storm" may be responsible for age-related neurodegeneration as well as the pathology seen in some neurodegenerative disorders.
However, his studies so far don't address whether transposons are the cause or an effect of aging-related brain defects. "The next step will be to activate transposons by genetically manipulating fruit flies and ask whether they are a direct cause of neurodegeneration," Dubnau says.
###
"Activation of transposable elements during aging and neuronal decline in Drosophila" is published online in Nature Neuroscience on April 7, 2013. The authors are: Wanhe Li1, Lisa Prazak, Nabanita Chatterjee, Servan Grüninger, Lisa Krug, Delphine Theodorou & Josh Dubnau. The paper can be obtained online at doi:10.1038/nn.3368. [http://dx.doi.org/10.1038/nn.3368]
The research described in this release was supported by the following grants and funding agencies: US National Institutes of Health grant TR01(5R01NS067690-03) and DART NeuroScience LLC awarded to J.D. S.G. received additional support from the Shakespeare Fellowship and the Ernst Göhner Foundation. About Cold Spring Harbor Laboratory
Founded in 1890, Cold Spring Harbor Laboratory (CSHL) has shaped contemporary biomedical research and education with programs in cancer, neuroscience, plant biology and quantitative biology. CSHL is ranked number one in the world by Thomson Reuters for impact of its research in molecular biology and genetics. The Laboratory has been home to eight Nobel Prize winners. Today, CSHL's multidisciplinary scientific community is more than 360 scientists strong and its Meetings & Courses program hosts more than 12,500 scientists from around the world each year to its Long Island campus and its China center. Tens of thousands more benefit from the research, reviews, and ideas published in journals and books distributed internationally by CSHL Press. The Laboratory's education arm also includes a graduate school and programs for undergraduates as well as middle and high school students and teachers. CSHL is a private, not-for-profit institution on the north shore of Long Island. For more information, visit http://www.cshl.edu.
Written by: Edward Brydon Ph.D., Science Writer END
Breast cancers that lack estrogen receptors are more difficult to treat than ER+ cancers. Research presented at the AACR Annual Meeting 2013 demonstrates an investigational drug, Paragazole, that makes triple-negative breast cancer cells express estrogen receptors, and that increases the sensitivity of these cells to chemotherapy.
"Basically what we're trying to do is use triple-negative breast cancer models to develop targeted drugs for treatment. Paragazole is an especially exciting candidate," says Jennifer Diamond, MD, investigator at the University of Colorado Cancer ...
Catalysis may initiate almost all modern industrial manufacturing processes, but catalytic activity on solid surfaces is poorly understood. This is especially true for the cellulase enzymes used to release fermentable sugars from cellulosic biomass for the production of advanced biofuels. Now, researchers with the Lawrence Berkeley National Laboratory (Berkeley Lab) through support from the Energy Biosciences Institute (EBI) have literally shed new light on cellulase catalysis.
Using an ultrahigh-precision visible light microscopy technique called PALM – for Photo-Activated ...
Michael Woods
m_woods@acs.org
504-670-4707 (New Orleans Press Center, April 5-10)
202-872-6293
American Chemical Society
New 'transient electronics' disappear when no longer needed
NEW ORLEANS, April 8, 2013 — Scientists today described key advances toward practical uses of a new genre of tiny, biocompatible electronic devices that could be implanted into the body to relieve pain or battle infection for a specific period of time, and then dissolve harmlessly.
These "transient electronics," described here at the 245th National Meeting & Exposition of the American ...
Michael Woods
m_woods@acs.org
504-670-4707 (New Orleans Press Center, April 5-10)
202-872-6293
American Chemical Society
Natural soil bacteria pump new life into exhausted oil wells
NEW ORLEANS, April 8, 2013 — Technology that enlists natural soil bacteria as 21st century roughnecks now is commercially available and poised to recover precious oil remaining in thousands of exhausted oil wells, according to a scientist who spoke here today. His report on a process termed microbially enhanced oil recovery (MEOR) was part of the 245th National Meeting & Exposition ...
Michael Woods
m_woods@acs.org
504-670-4707 (New Orleans Press Center, April 5-10)
202-872-6293
American Chemical Society
Understanding climate science: A scientist's responsibility to communicate with the public
NEW ORLEANS, April 8, 2013 — With global climate change and the prospect of another record-hot summer on the minds of millions of people, experts have gathered here today to encourage scientists to take a more active role in communicating the topic to the public, policy makers and others. The symposium, "Understanding Climate Science: A Scientist's ...
Michael Woods
m_woods@acs.org
504-670-4707 (New Orleans Press Center, April 5-10)
202-872-6293
American Chemical Society
Global leaders of $3.5 trillion enterprise gathering for 2 days of talks
NEW ORLEANS, April 8, 2013 — Top leaders in chemistry — a $760 billion annual enterprise in the United States and $3.5 trillion worldwide — are gathering here today to consider a formula for ensuring the future success of the scientists whose work touches 96 percent of all the world's manufactured goods.
The special symposium titled "Vision 2025: How to Succeed in ...
Michael Woods
m_woods@acs.org
504-670-4707 (New Orleans Press Center, April 5-10)
202-872-6293
American Chemical Society
Egyptian wedding certificate key to authenticating controversial Biblical text
NEW ORLEANS, April 8, 2013 — A scientist who helped verify authenticity of the fabled Gospel of Judas today revealed how an ancient Egyptian marriage certificate played a pivotal role in confirming the veracity of inks used in the controversial text. The disclosure, which sheds new light on the intensive scientific efforts to validate the gospel, was made here ...
Protecting against aging at the molecular level
High fidelity DNA replication during each cycle of cell division is required to maintain genomic stability and prevent chromosomal mutations and rearrangements that can cause disease and aging. Mutations in ATRX, a gene that encodes a protein that participates in DNA replication, are associated with X-linked mental retardation, various cancers, and developmental disorders, but the cellular functions of ATRX are still unclear. In this issue of the Journal of Clinical Investigation, researchers led by Nathalie Bérubé at the ...
High fidelity DNA replication during each cycle of cell division is required to maintain genomic stability and prevent chromosomal mutations and rearrangements that can cause disease and aging. Mutations in ATRX, a gene that encodes a protein that participates in DNA replication, are associated with X-linked mental retardation, various cancers, and developmental disorders, but the cellular functions of ATRX are still unclear. In this issue of the Journal of Clinical Investigation, researchers led by Nathalie Bérubé at the University of Western Ontario report on the effects ...
The retina is a highly vascularized tissue, but too much or too little vascularization can lead to visual impairment and diseases such as familial exudative vitreoretinopathy or macular degeneration. In this issue of the Journal of Clinical Investigation, Alfred Nordheim and colleagues at Tuebingen University in Tuebingen, Germany, identified the DNA transcription factor SRF and its cofactors MRTF-A and MRTF-B as critical regulators of vascularization in the postnatal mouse eye. Loss of vascular Srf in adult mice led to the formation of microaneurysms and excess blood vessel ...