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Electrophoresis in agarose

Slater, GW Rousseau, J Noolandi, J Tunnel, C Lalande, M, Quantitative Analysis of the Three Regimes of DNA Electrophoresis in Agarose Gels, Biopolymers 27, 509, 1988. [Pg.621]

Weiss, GH Garner, M Yarmola, E Bocek, P Chrambach, A, A Comparison of Resolution of DNA Fragments Between Agarose Gel and Capillary Zone Electrophoresis in Agarose Solutions, Electrophoresis 16, 1345, 1995. [Pg.623]

Bocek, P. and Chrambach, A., Capillary electrophoresis in agarose solutions extension of size separations to DNA of 12 kb in length, Electrophoresis, 13, 31, 1992. [Pg.420]

Zhu, X.Q., Chilton, N.B., Beveridge, I. and Gasser, R.B. (1998a) Detection of sequence variation in parasite ribosomal DNA by electrophoresis in agarose gels supplemented with a DNA-intercalating agent. Electrophoresis 19, 671-674. [Pg.90]

A. C. Peacock and C. W. Dingman, Biochemistry, 7 688-674 (1968). Molecular Weight Estimation and Separation of Ribonucleic Acid by Electrophoresis in Agarose-Acrylamide Composite Gels. [Pg.232]

Laurell, C. B. (1966) Quartbtative estimabon of proteins by electrophoresis in agarose gel containing anubodies. AtuU. Biochem. 15, 45-52. [Pg.205]

Estimate by electrophoresis in agarose gel the concentration of DNA verify that the plasmid vector runs as the relaxed (digested) form. [Pg.164]

Electrophoresis in agarose gels is being developed for fractionating mixtures of multimolecular particles by the particles size, shape, flexibility and solid support free electrophoretic mobility (uo). Advances in the use of sieving to determine size, shape, flexibility and po are described. A procedure of two-dimensional agarose gel electrophoresis can be used to determine distributions of size and po for mixtures of heterogeneous particles. [Pg.158]

Cole K D, Tellez C M (2002). Separation of large circular DNA by electrophoresis in agarose gels. Biotechnol. Prog. 18(l) 82-87. [Pg.317]

Heegaard NHH and Bag-Hansen TC (1990) Affinity electrophoresis in agarose gels. Theory and some applications. Applied and Theoretical Electrophoresis 1 249. [Pg.1012]

Absence of free plus strand RNA was shown by gel electrophoresis in agarose (ij) Digestion of denatured (52pjRi with RHase T2 and separation of the products by column chromatography is shown... [Pg.182]

Fig. 1.26. Electrophoresis in agarose gel (1.8%) of (a) coRI and (b) P fl digestions of the ampMcats of the METl gene of the strain hybrid. Bands 1, 2, 3 sub-clones of the hybrid strain band 4 hybrid strain band 5 S. cerevisiae VKM-Y 502 band 6 S. bayanus VKM-Y 1146. M = molecular weight marker... Fig. 1.26. Electrophoresis in agarose gel (1.8%) of (a) coRI and (b) P fl digestions of the ampMcats of the METl gene of the strain hybrid. Bands 1, 2, 3 sub-clones of the hybrid strain band 4 hybrid strain band 5 S. cerevisiae VKM-Y 502 band 6 S. bayanus VKM-Y 1146. M = molecular weight marker...

See other pages where Electrophoresis in agarose is mentioned: [Pg.40]    [Pg.154]    [Pg.1491]    [Pg.275]    [Pg.379]    [Pg.189]    [Pg.74]    [Pg.289]    [Pg.339]    [Pg.9]    [Pg.578]    [Pg.557]    [Pg.155]    [Pg.361]    [Pg.190]    [Pg.190]    [Pg.240]    [Pg.38]   


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