Proteins are often referred to as the building blocks of life, and make up about 15 per cent of the mass of the average person, performing a wide variety of essential functions in the body.

Scientists have long speculated about the nature of the dark proteome, the area of proteins that are completely unknown, but a recent study by CSIRO has mapped the boundaries of these dark regions, bringing us one step closer to discovering the complete structure and function of all proteins.

The work, led by Dr Sean O'Donoghue, a data visualisation scientist with CSIRO and the Garvan Institute, has been published today in the prestigious Proceedings of the National Academy of Sciences journal.

Both in materials science and in biomedical research it is important to be able to view minute nanostructures, for example in carbon-fiber materials and bones. A team from the Technical University of Munich (TUM), the University of Lund, Charite hospital in Berlin and the Paul Scherrer Institute (PSI) have now developed a new computed tomography method based on the scattering, rather than on the absorption, of X-rays. The technique makes it possible for the first time to visualize nanostructures in objects measuring just a few millimeters, allowing the researchers to view the precise three-dimensional structure of collagen fibers in a piece of human tooth.

Astronomers using the Atacama Large Millimeter/submillimeter Array (ALMA) have discovered that a dim, cool dwarf star is generating a surprisingly powerful magnetic field, one that rivals the most intense magnetic regions of our own Sun.

The star's extraordinary magnetic field is potentially associated with a constant flurry of solar-flare-like eruptions. As with our Sun, these flares would trace tightly wound magnetic field lines that act like cosmic particle accelerators: warping the path of electrons and causing them to emit telltale radio signals that can be detected with ALMA.

Such intense flare activity, the astronomers note, would barrage nearby planets with charged particles.

  • Fastest pigeons tend to become flock leaders

  • Leaders learn navigation skills more effectively than followers

    Many birds travel in flocks, sometimes migrating over thousands of miles. But how do the birds decide who will lead the way? Researchers at Oxford University, reporting in the journal Current Biology, can offer new insight based on studies in homing pigeons. For pigeons, it seems, leadership is largely a question of speed.

    'This changes our understanding of how the flocks are structured and why flocks of this species have consistent leadership hierarchies,' says co-author Dr Dora Biro of the Department of Zoology at Oxford.

  • As you're driving to work along a busy road, your eyes on the traffic lights ahead, hoping they won't turn to red, you pass signs warning of roadworks, ads on bus shelters... Suddenly a dog runs out in front of you. What are your chances of seeing it before it's too late?

    Even with 20/20 vision in broad daylight on a clear day, our peripheral vision can be surprisingly poor, particularly when the scene in front of us is cluttered. Now, scientists at the University of Cambridge, UK, Northeastern University, Boston, USA, and Queensland Brain Institute, Brisbane, Australia, believe they are a step closer to understanding why this is.

    Health services in many countries increasingly rely on prescribed 'psychosocial interventions': treatments that use counselling techniques to tackle mental health issues, behavioural problems such as substance abuse, and assist parents with new or troubled children.

    These highly-regarded therapeutic and educational programmes, devised by senior academics and practitioners, are sold commercially to public health services across the world on the basis that they are effective interventions for people in need of support - with the evidence to back them up.

    As doctors in England prepare for strike action next month, researchers at Harvard Medical School and Brigham and Women's Hospital (Boston, USA) show that, in high-income countries, "patients do not come to serious harm during industrial action provided that provisions are made for emergency care."

    In The BMJ today, David Metcalfe and colleagues report that death rates remained the same, or decreased, during all previous doctor strikes that have been studied in developed countries. They say that strikes can therefore be organised in such a way that patient safety is not compromised.

    The right to strike is recognised as a fundamental human right by the United Nations, the Council of Europe, and the European Union, they explain.

    The widespread misuse of skin creams and lotions that contain steroids in India is harmful and out of control, argues an expert in The BMJ this week.

    Corticosteroids, also known as steroids, are anti-inflammatory medicines used for a range of conditions. However, these can lead to substantial and permanent damage, especially on thin skin, such as on the face and groin.

    Side effects include pigmentation and breakdown of the skin, small and widened blood vessels on the skin, as well as bacterial and fungal infections. Misuse can lead to resistance of infections that can make these difficult to diagnose and treat.

    A new study from the University of Exeter has found that teaching is not essential for people to learn to make effective tools. The results counter established views about how human tools and technologies come to improve from generation to generation and point to an explanation for the extraordinary success of humans as a species. The study reveals that although teaching is useful, it is not essential for cultural progress because people can use reasoning and reverse engineering of existing items to work out how to make tools.

    Anna's hummingbird from the US west coast has the spangly plumage of a ballroom dancer, could out-maneuver a fighter pilot and can out-hover a helicopter. New research to be published in the journal eLife shows that brute strength is surprisingly important to their abilities.

    An intensive study of 20 Anna's hummingbirds, Calypte anna, led by the University of British Columbia, revealed that birds with the highest muscle capacity are able to accelerate faster and make more demanding, complex turns.

    "We had expected wing morphology and body mass to have more of an influence on maneuverability so were surprised that muscle capacity is so important," says Doug Altshuler, lead author from the University of British Columbia.