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62. Endo M, Katsuda Y, Hidaka K, Sugiyama H. A versatile DNA nanochip for direct analysis of DNA base-excision
repair. Angew Chem Int Ed Engl . 2010;49(49):9412
9416.
63. Douglas SM, Bachelet I, Church GM. A logic-gated nanorobot for targeted transport of molecular payloads.
Science . 2012;335(6070):831
834.
64. Shimizu Y, Kanamori T, Ueda T. Protein synthesis by pure translation systems. Methods . 2005;36(3):299
304.
65. Ohashi H, Kanamori T, Shimizu Y, Ueda T. A highly controllable reconstituted cell-free system
a
271.
66. Hodgman CE, Jewett MC. Cell-free synthetic biology: thinking outside the cell. Metab Eng . 2012;14(3):
261
breakthrough in protein synthesis research. Curr Pharm Biotechnol . 2010;11(3):267
269. http://dx.doi.org/10.1016/j.ymben.2011.09.002.
67. Swartz J. Developing cell-free biology for industrial applications. J Ind Microbiol Biot . 2006;33(7):476
485.
68. Guarino C, Delisa MP. A prokaryote-based cell-free translation system that efficiently synthesizes glycoproteins.
Glycobiology . 2011;22(5):596
601.
69. Uzawa T, Yamagishi A, Oshima T. Polypeptide synthesis directed by DNA as a messenger in cell-free
polypeptide synthesis by extreme thermophiles, Thermus thermophilus HB27 and Sulfolobus tokodaii strain 7.
J Biochem . 2002;131(6):849 853.
70. Madin K, Sawasaki T, Ogasawara T, Endo Y. A highly efficient and robust cell-free protein synthesis system
prepared from wheat embryos: plants apparently contain a suicide system directed at ribosomes. Proc Natl Acad
Sci USA . 2000;97(2):559 564.
71. Park N, Um SH, Funabashi H, Xu J, Luo D. A cell-free protein-producing gel. Nat Mater . 2009;8(5):432 437.
72. Pelham HRB, Jackson RJ. An efficient mRNA-dependent translation system from reticulocyte lysates. Eur J
Biochem . 1976;67(1):247 256.
73. Ryabova LA, Ortlepp SA, Baranovp VI. Preparative synthesis of globin in a continuous cell-free translation
system from rabbit reticulocytes. Nucleic Acids Res . 1989;17(11):4412.
74. Hancock JF. Reticulocyte lysate assay for in vitro translation and posttranslational modification of ras proteins.
Methods Enzymol . 1995;244:60
65.
75. Endo Y, Sawasaki T. Cell-free expression systems for eukaryotic protein production. Curr Opin Biotechnol .
2006;17(4):373
380.
76. Ezure T, Suzuki T, Shikata M, Ito M, Ando EA. Cell-free protein synthesis system from insect cells. In: Endo Y,
Ueda T, Takai K, eds. Cell-Free Protein Production . Humana Press; 2010:31
42.
77. Tarui H, Murata M, Tani I, Imanishi S, Nishikawa S, Hara T. Establishment and characterization of cell-free
translation/glycosylation in insect cell extract prepared with high pressure treatment. Appl Microbiol Biotechnol .
2001;55(4):446
298
453.
78. Suzuki T, Ito M, Ezure T, Shikata M, Ando E, Utsumi T, et al. Protein prenylation in an insect cell-free
protein synthesis system and identification of products by mass spectrometry. Proteomics . 2007;7
(12):1942
1950.
79. Suzuki T, Ito M, Ezure T, Shikata M, Ando E, Utsumi T, et al. N-terminal protein modifications in an insect
cell-free protein synthesis system and their identification by mass spectrometry. Proteomics . 2006;6
(16):4486 4495.
80. Sedov SA, Belogurova NG, Shipovskov S, Levashov AV, Levashov PA. Lysis of Escherichia coli cells by lysozyme:
discrimination between adsorption and enzyme action. Colloids Surf B Biointerfaces . 2011;88(1):131 133.
81. Hu T, Li HY, Zhang XZ, Luo HJ, Fu JM. Toxic effect of NaCl on ion metabolism, antioxidative enzymes and
gene expression of perennial ryegrass. Ecotoxicol Environ Saf . 2011;74(7):2050 2056.
82.
te Velthuis AJ, van den Worm SH, Sims AC, Baric RS, Snijder EJ, van Hemert MJ. Zn(2 1 ) inhibits coronavirus
and arterivirus RNA polymerase activity in vitro and zinc ionophores block the replication of these viruses in
cell culture. PLoS Pathog . 2010;6(11):e1001176.
83.
Jaenicke R. Protein folding: local structures, domains, subunits, and assemblies. Biochemistry . 1991;30
(13):3147
3161.
84. Zlotnick A, Ceres P, Singh S, Johnson JM. A small molecule inhibits and misdirects assembly of hepatitis B
virus capsids. J Virol . 2002;76(10):4848
4854.
85. Bundy BC, Franciszkowicz MJ, Swartz JR. Escherichia coli -based cell-free synthesis of virus-like particles.
BiotechBioeng . 2008;100(1):28
37.
86. Bundy BC, Swartz JR. Efficient disulfide bond formation in virus-like particles. J Biotechnol . 2011;154
(4):230
239.
87. Ceres P, Zlotnick A. Weak protein
protein interactions are sufficient to drive assembly of hepatitis B virus
capsids. Biochemistry . 2002;41(39):11525
11531.
88. Ezure T, Suzuki T, Shikata M, Ito M, Ando E, Nishimura O, et al. Expression of proteins containing disulfide
bonds in an insect cell-free system and confirmation of their arrangements by MALDI-TOF MS. Proteomics .
2007;7(24):4424
4434.
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