Quantitative imaging of gene-expressing liposomes reveals rare favorable phenotypes

被引:22
作者
Blanken, Duco [1 ]
van Nies, Pauline [1 ]
Danelon, Christophe [1 ]
机构
[1] Delft Univ Technol, Kavli Inst Nanosci, Dept Bionanosci, van der Maasweg 9, NL-2629 HZ Delft, Netherlands
关键词
synthetic cell; minimal cell; PURE system; cell-free gene expression; liposome; GIANT UNILAMELLAR VESICLES; PROTEIN-SYNTHESIS; LIPID VESICLES; IN-VITRO; MESSENGER-RNA; CELL; SYSTEM; COMPARTMENT; MEMBRANE; TRACKING;
D O I
10.1088/1478-3975/ab0c62
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The biosynthesis of proteins from genomic DNA is a universal process in every living organism. Building a synthetic cell using separate biological parts hence implies to reconstitute a minimal gene expression apparatus and to compartmentalize it in a cell-mimicking environment. Previous studies have demonstrated that the PURE (Protein synthesis Using Recombinant Elements) system could be functionally encapsulated inside lipid vesicles. However, quantitative insights on functional consequences of spatial confinement of PURE system reactions remain scarce, which has hampered the full exploitation of gene-expressing liposomes as the fundamental unit to build an artificial cell. We report on direct imaging of tens of thousands of gene-expressing liposomes per sample allowing us to assess sub-population features in a statistically relevant manner. Both the vesicle size (diameter < 10 mu m) and lipid composition (mixture of phospholipids with zwitterionic and negatively charged headgroups, including cardiolipin) are compatible with the properties of bacterial cells. Therefore, our liposomes provide a suitable chassis to host the Escherichia coli-derived PURE translation machinery and other bacterial processes in future developments. The potential of high-content imaging to identify rare phenotypes is demonstrated by the fact that a subset of the liposome population exhibits a remarkably high yield of synthesized protein or a prolonged expression lifespan that surpasses the performance of ensemble liposome-averaged and bulk reactions. Among the three commercial PURE systems tested, PUREfrex2.0 offers the most favorable phenotypes displaying both high yield and long protein synthesis lifespan. Moreover, probing membrane permeability reveals a large heterogeneity amongst liposomes. In situ expression and membrane embedding of the pore-forming connexin leads to a characteristic permeability time profile, while increasing the fraction of permeable liposomes in the population. We see diversity in gene expression dynamics and membrane permeability as an opportunity to complement a rational design approach aiming at further implementing biological functions in liposome-based synthetic cells.
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页数:14
相关论文
共 64 条
[1]   Continuous droplet interface crossing encapsulation (cDICE) for high throughput monodisperse vesicle design [J].
Abkarian, Manouk ;
Loiseau, Etienne ;
Massiera, Gladys .
SOFT MATTER, 2011, 7 (10) :4610-4614
[2]  
Altamura E, 2018, SYN BIOL, V3, DOI 10.1093/synbio/ysy011
[3]   Tuning Response Curves for Synthetic Biology [J].
Ang, Jordan ;
Harris, Edouard ;
Hussey, Brendan J. ;
Kil, Richard ;
McMillen, David R. .
ACS SYNTHETIC BIOLOGY, 2013, 2 (10) :547-567
[4]   LIPOSOME ELECTROFORMATION [J].
ANGELOVA, MI ;
DIMITROV, DS .
FARADAY DISCUSSIONS, 1986, 81 :303-+
[5]   cDICE method produces giant lipid vesicles under physiological conditions of charged lipids and ionic solutions [J].
Blosser, Matthew C. ;
Horst, Benjamin G. ;
Keller, Sarah L. .
SOFT MATTER, 2016, 12 (35) :7364-7371
[6]   Resource Sharing Controls Gene Expression Bursting [J].
Caveney, Patrick M. ;
Norred, S. Elizabeth ;
Chin, Charles W. ;
Boreyko, Jonathan B. ;
Razooky, Brandon S. ;
Retterer, Scott T. ;
Collier, C. Patrick ;
Simpson, Michael L. .
ACS SYNTHETIC BIOLOGY, 2017, 6 (02) :334-343
[7]   A fluorescent membrane tension probe [J].
Colom, Adai ;
Derivery, Emmanuel ;
Soleimanpour, Saeideh ;
Tomba, Caterina ;
Dal Molin, Marta ;
Sakai, Naomi ;
Gonzalez-Gaitan, Marcos ;
Matile, Stefan ;
Roux, Aurelien .
NATURE CHEMISTRY, 2018, 10 (11) :1118-1125
[8]   Spontaneous Crowding of Ribosomes and Proteins inside Vesicles: A Possible Mechanism for the Origin of Cell Metabolism [J].
de Souza, Tereza Pereira ;
Steiniger, Frank ;
Stano, Pasquale ;
Fahr, Alfred ;
Luisi, Pier Luigi .
CHEMBIOCHEM, 2011, 12 (15) :2325-2330
[9]   Monodisperse Uni- and Multicompartment Liposomes [J].
Deng, Nan-Nan ;
Yelleswarapu, Maaruthy ;
Huck, Wilhelm T. S. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (24) :7584-7591
[10]   Octanol-assisted liposome assembly on chip [J].
Deshpande, Siddharth ;
Caspi, Yaron ;
Meijering, Anna E. C. ;
Dekker, Cees .
NATURE COMMUNICATIONS, 2016, 7