Engineering protocells: prospects for self-assembly and nanoscale production-lines
Author(s)
Miller, DM; Gulbis, JM;
Details
Publication Year 2015,Volume 5,Issue #2,Page 1019-53
Journal Title
Life
Publication Type
Journal Article
Abstract
The increasing ease of producing nucleic acids and proteins to specification offers potential for design and fabrication of artificial synthetic "organisms" with a myriad of possible capabilities. The prospects for these synthetic organisms are significant, with potential applications in diverse fields including synthesis of pharmaceuticals, sources of renewable fuel and environmental cleanup. Until now, artificial cell technology has been largely restricted to the modification and metabolic engineering of living unicellular organisms. This review discusses emerging possibilities for developing synthetic protocell "machines" assembled entirely from individual biological components. We describe a host of recent technological advances that could potentially be harnessed in design and construction of synthetic protocells, some of which have already been utilized toward these ends. More elaborate designs include options for building self-assembling machines by incorporating cellular transport and assembly machinery. We also discuss production in miniature, using microfluidic production lines. While there are still many unknowns in the design, engineering and optimization of protocells, current technologies are now tantalizingly close to the capabilities required to build the first prototype protocells with potential real-world applications.
Research Division(s)
Structural Biology
PubMed ID
25815781
Open Access at Publisher's Site
http://www.mdpi.com/2075-1729/5/2/1019
Terms of Use/Rights Notice
Refer to copyright notice on published article.


Creation Date: 2015-05-20 10:11:24
Last Modified: 2015-05-20 01:21:12
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