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Items: 1 to 20 of 103

1.

The emergence of competition between model protocells.

Chen IA, Roberts RW, Szostak JW.

Science. 2004 Sep 3;305(5689):1474-6.

2.

The emergence of ribozymes synthesizing membrane components in RNA-based protocells.

Ma W, Yu C, Zhang W, Zhou P, Hu J.

Biosystems. 2010 Mar;99(3):201-9. doi: 10.1016/j.biosystems.2009.11.003. Epub 2009 Dec 2.

PMID:
19961895
3.

The origins of cellular life.

Schrum JP, Zhu TF, Szostak JW.

Cold Spring Harb Perspect Biol. 2010 Sep;2(9):a002212. doi: 10.1101/cshperspect.a002212. Epub 2010 May 19. Review.

4.

Reconstructing the emergence of cellular life through the synthesis of model protocells.

Mansy SS, Szostak JW.

Cold Spring Harb Symp Quant Biol. 2009;74:47-54. doi: 10.1101/sqb.2009.74.014. Epub 2009 Sep 4. Review.

PMID:
19734203
5.

Coupled growth and division of model protocell membranes.

Zhu TF, Szostak JW.

J Am Chem Soc. 2009 Apr 22;131(15):5705-13. doi: 10.1021/ja900919c.

6.

Experimental models of primitive cellular compartments: encapsulation, growth, and division.

Hanczyc MM, Fujikawa SM, Szostak JW.

Science. 2003 Oct 24;302(5645):618-22.

7.

How did cells get their size?

Morris CE.

Anat Rec. 2002 Nov 1;268(3):239-51. Review.

8.

A kinetic study of the growth of fatty acid vesicles.

Chen IA, Szostak JW.

Biophys J. 2004 Aug;87(2):988-98.

9.

Competition between model protocells driven by an encapsulated catalyst.

Adamala K, Szostak JW.

Nat Chem. 2013 Jun;5(6):495-501. doi: 10.1038/nchem.1650. Epub 2013 May 19. Erratum in: Nat Chem. 2013 Jul;5(7):634.

10.

Kinetic studies of the interaction of fatty acids with phosphatidylcholine vesicles (liposomes).

Rogerson ML, Robinson BH, Bucak S, Walde P.

Colloids Surf B Biointerfaces. 2006 Mar 1;48(1):24-34. Epub 2006 Feb 8.

PMID:
16466910
11.

An optimal degree of physical and chemical heterogeneity for the origin of life?

Szostak JW.

Philos Trans R Soc Lond B Biol Sci. 2011 Oct 27;366(1580):2894-901. doi: 10.1098/rstb.2011.0140. Review.

12.

Nutrient uptake by protocells: a liposome model system.

Monnard PA, Deamer DW.

Orig Life Evol Biosph. 2001 Feb-Apr;31(1-2):147-55.

PMID:
11296517
13.
14.

Significance of non-esterified fatty acids in iron uptake by intestinal brush-border membrane vesicles.

Simpson RJ, Moore R, Peters TJ.

Biochim Biophys Acta. 1988 Jun 7;941(1):39-47.

PMID:
3370211
15.

Protocell self-reproduction in a spatially extended metabolism-vesicle system.

Macía J, Solé RV.

J Theor Biol. 2007 Apr 7;245(3):400-10. Epub 2006 Oct 27.

PMID:
17184796
16.

Photochemically driven redox chemistry induces protocell membrane pearling and division.

Zhu TF, Adamala K, Zhang N, Szostak JW.

Proc Natl Acad Sci U S A. 2012 Jun 19;109(25):9828-32. doi: 10.1073/pnas.1203212109. Epub 2012 Jun 4.

17.

Early self-reproduction, the emergence of division mechanisms in protocells.

Murtas G.

Mol Biosyst. 2013 Feb 2;9(2):195-204. doi: 10.1039/c2mb25375e. Epub 2012 Dec 11. Review.

PMID:
23232904
18.

Nonenzymatic template-directed RNA synthesis inside model protocells.

Adamala K, Szostak JW.

Science. 2013 Nov 29;342(6162):1098-100. doi: 10.1126/science.1241888.

19.

Evolution and self-assembly of protocells.

Solé RV.

Int J Biochem Cell Biol. 2009 Feb;41(2):274-84. doi: 10.1016/j.biocel.2008.10.004. Epub 2008 Oct 17. Review.

PMID:
18951997
20.

Enzymatic RNA replication in self-reproducing vesicles: an approach to a minimal cell.

Oberholzer T, Wick R, Luisi PL, Biebricher CK.

Biochem Biophys Res Commun. 1995 Feb 6;207(1):250-7.

PMID:
7531971
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