Scientists from the University of California, Berkeley, and the University of Hawaii, Manoa, showed that conditions in space are capable of creating complex dipeptides - linked pairs of amino acids - that are essential building blocks shared by all living things.
The discovery opens the door to the possibility that these molecules were brought to Earth aboard a comet or possibly meteorites, catalysing the formation of proteins, enzymes and even more complex molecules, such as sugars, that are necessary for life.
While scientists have discovered basic organic molecules, such as amino acids, in numerous meteorites that have fallen to Earth, they have been unable to find the more complex molecular structures that are prerequisites for our planet's biology.
As a result, scientists have always assumed that the really complicated chemistry of life must have originated in Earth's early oceans.
More From This Section
In an ultra-high vacuum chamber chilled to 10 degrees above absolute zero, Seol Kim and Ralf Kaiser of the Hawaiian team simulated an icy snowball in space including carbon dioxide, ammonia and various hydrocarbons such as methane, ethane and propane.
Mathies and Amanda Stockton then analysed the organic residues through the Mars Organic Analyser, an instrument that Mathies designed for ultrasensitive detection and identification of small organic molecules in the solar system.
The analysis revealed the presence of complex molecules � nine different amino acids and at least two dipeptides � capable of catalysing biological evolution on Earth.