EVOLUTIONARILY MOBILE MODULES IN PROTEINS
EVOLUTIONARILY MOBILE MODULES IN PROTEINS
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DOI:
10.1038/scientificamerican1093-50
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发表时间:
1993-10-01
影响因子:
3
通讯作者:
BORK, P
中科院分区:
文献类型:
--
作者:
DOOLITTLE, RF;BORK, P
Eolecular biologists and bio-chemists have learned in recent decades that many proteins consist of domains, or discrete blocks of amino acids. Many of these domains have well-de ‘ned functions that contribute to the overall activity of a protein. Furthermore, some of these modular units frequently move about within and between proteins during evolution. The evolutionary mobility of these modules is not restricted to hops within the genetic material of a single species: in some cases, the modules are apparently able to travel laterally across species lines» even moving from animal cells to bacteria, for example. Because a compartmental delineation has also been found in the regions of genes that encode proteins, many biologists have been convinced that these structural features are re’ections of the same underlying phenomenon. They believe that each genetic coding region corresponds to a speci ‘c structural feature in a protein. We and our colleagues take a somewhat di” erent point of view. The weight of evidence, in our opinion, falls to the argument that the subdivision of genes into separate coding parts is a far more recent development by evolutionary standards.Proteins are long chains of small molecules called amino acids. Twenty different kinds of amino acids, each with its own shape and chemical character, make up all the proteins found in nature. All the properties of a protein depend on which of the 20 amino acids are used in its construction and, particularly, on the order in which they are strung together. Most notably, the amino acid sequence determines how the protein will fold up into an active, threedimensional body.