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University of Pennsylvania


Dynamic plants

Researchers identify NAD+ capping as a key regulator of RNA stability in plants, allowing them to dynamically respond to environmental cues and stress. This process is similar to what has been found in mammalian cells, with implications for understanding plant development and response to hormone signals.

SourceUniversity of Pennsylvania·JournalDevelopmental Cell·DateDec 7, 2020

Dueling proteins give shape to plants

In a new study, researchers have identified the molecular mechanism behind two key proteins that influence plant form and timing of developmental transitions. The study reveals an antagonistic relationship between Terminal Flower 1 (TLF1) and Flowering Locus T (FT) proteins, which promote branch formation and flowering, respectively.

SourceUniversity of Pennsylvania·JournalNature Communications·DateOct 12, 2020

Tracking the working dogs of 9/11

A study of search and rescue dogs found that dogs at the disaster site lived a similar length of time as those in a control group, with no discernable difference in cause of death. The most common cause of death was age-related conditions such as arthritis and cancer.

SourceUniversity of Pennsylvania·JournalJournal of the American Veterinary Medical Association·DateSep 21, 2020

Progress toward a treatment for Krabbe disease

A study by University of Pennsylvania researchers describes an effective gene therapy for Krabbe disease in dogs, which has shown promising results with no significant symptoms after four years. The treatment approach, using the AAV9 vector, has also been found to positively affect both central and peripheral nervous systems.

SourceUniversity of Pennsylvania·JournalJournal of Clinical Investigation·DateAug 26, 2020

Plato was right. Earth is made, on average, of cubes

According to the study published in the Proceedings of the National Academy of Sciences, rocks on Earth are, on average, cube-shaped due to fragmentation processes. The researchers' findings suggest that this shape is statistically average and applies not only to Earth but also around the solar system.

SourceUniversity of Pennsylvania·JournalProceedings of the National Academy of Sciences·DateJul 20, 2020

Advancing knowledge on archaea

A web-based database, Archaeal Proteome Project (ArcPP), collects and makes available datasets to further research on archaea, a domain of microorganisms. The platform provides easily accessible data and expertise for analyzing proteomics studies, yielding significant new insights into archaeal biology.

SourceUniversity of Pennsylvania·JournalNature Communications·DateJul 20, 2020

300-million-year-old fish resembles a sturgeon but took a different evolutionary path

A new study reveals that ancient fish species Tanyrhinichthys mcallisteri, dating back 300 million years, exhibits features similar to modern sturgeons despite divergent evolutionary paths. The findings indicate multiple instances of convergent evolution, highlighting the adaptability of fish in response to environmental conditions.

SourceUniversity of Pennsylvania·JournalZoological Journal of the Linnean Society·DateJun 22, 2020

Parasites and the microbiome

Researchers found that parasite infection was strongly associated with the overall composition of the microbiome, which could accurately predict a person's country and lifestyle. The study also discovered that the presence of four soil-transmitted gut parasites tended to co-occur at a higher rate than chance.

SourceUniversity of Pennsylvania·JournalGenome Biology·DateJun 12, 2020

Cavity-causing bacteria assemble an army of protective microbes on human teeth

A team from the University of Pennsylvania and Georgia Tech discovered that cavity-causing bacteria, Streptococcus mutans, are encased in a protective community of other microbes forming a unique spatial organization. This structure is crucial to how they cause tooth decay and can be used to target the pathogenic core of dental biofilms.

SourceUniversity of Pennsylvania·JournalProceedings of the National Academy of Sciences·DateMay 18, 2020

To err is human, to learn, divine

The human brain balances complexity and accuracy when processing patterns, with errors playing a crucial role in learning and cognition. The new model suggests that the brain constantly strives to represent things in simple terms, with participants showing quicker responses to sequences generated by modular networks.

SourceUniversity of Pennsylvania·JournalNature Communications·DateMay 8, 2020

Tailoring treatment for triple-negative breast cancer

A new study has identified a molecular pathway responsible for the progression and spread of triple-negative breast cancer (TNBC). By blocking the signaling pathway, researchers found that tumors grew and spread more slowly. The findings suggest that patients with low ELF5 protein levels should be given interferon-gamma signaling-block...

SourceUniversity of Pennsylvania·JournalNature Cell Biology·DateApr 13, 2020

A new way to study HIV's impact on the brain

Researchers created a laboratory model of three types of brain cells to study HIV's impact on the central nervous system. The model revealed that HIV infection can take a toll on the brain, causing inflammation and damage. Antiretroviral therapy (ART) can reduce inflammation by around 70%, but also triggers its own unique response.

SourceUniversity of Pennsylvania·JournalStem Cell Reports·DateMar 27, 2020

The many lives of charcoal

African charcoal production supports nomadic lifestyles, while its large-scale use contributes to deforestation. Despite efforts to regulate, charcoal remains a significant source of energy worldwide, with millions of metric tons produced annually.

SourceUniversity of Pennsylvania·JournalResources·DateFeb 10, 2020

What is your risk from smoking? Your network knows!

A new study by University of Pennsylvania researchers found that people, smokers and non-smokers alike, were often inaccurate in their answers to questions about smoking's health effects. However, when participants discussed their ideas with others, especially in a networked setting, they became more accurate in their assessments.

SourceUniversity of Pennsylvania·JournalPLOS ONE·DateFeb 6, 2020

Tiny 'bridges' help particles stick together

A team of researchers at the University of Pennsylvania found that when particles are wet and dry, thin solid bridges formed between larger clumps increase aggregates' stability. The size of particles plays a crucial role in determining how strongly they stick together.

SourceUniversity of Pennsylvania·JournalProceedings of the National Academy of Sciences·DateFeb 4, 2020

A roadblock for disease-causing parasites

Researchers discovered that activating a mosquito's immune system can prevent the transmission of disease-causing parasites like Dirofilaria immitis and Brugia malayi. By boosting the immune response, mosquitoes can block parasite development, potentially stopping diseases like canine heartworm and human lymphatic filariasis.

SourceUniversity of Pennsylvania·JournalProceedings of the National Academy of Sciences·DateFeb 3, 2020

A better building block for creating new materials

Researchers at the University of Pennsylvania have discovered a way to synthesize organic 'Legos' that can be easily connected to make new materials. The new method uses electricity to create thin films of 2D sheets stacked in multiple layers, resulting in lightweight and heat-tolerant materials with enhanced properties.

SourceUniversity of Pennsylvania·JournalJournal of the American Chemical Society·DateJan 28, 2020