Use of resonance ionization spectroscopy to detect DNA bands on ultrathin spin-coated gels.

M J Doktycz, W A Gibson, H F Arlinghaus, R C Allen, K B Jacobson
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引用次数: 0

Abstract

Development of alternative electrophoresis procedures are necessary for large volume sequencing and mapping studies. The use of stable isotopes as DNA labels and ultrathin gels promises to greatly increase the rate of sequencing. Spin coating is presented as an alternative method for producing ultrathin polyacrylamide gels. The technique has the potential of producing gels of micron to submicron thicknesses by varying the viscosity of the acrylamide solution and the spinning speed. Thirty micron thick 6% (weight %) gels were produced in this manner. Tin-labeled DNA oligomers were electrophoresed and detected using sputter-initiated resonance ionization spectroscopy (SIRIS). The usefulness of SIRIS and laser atomization RIS (LARIS) to sample the surface and deeper layers of 240 microns thick gels was investigated. With LARIS, whole cross-sections of the gel can be atomized, possibly allowing complete sampling of labels.

利用共振电离光谱检测超薄自旋涂覆凝胶上的DNA带。
开发替代电泳程序对于大容量测序和制图研究是必要的。使用稳定同位素作为DNA标记和超薄凝胶有望大大提高测序率。自旋涂层是一种生产超薄聚丙烯酰胺凝胶的替代方法。通过改变丙烯酰胺溶液的粘度和纺丝速度,该技术具有生产微米至亚微米厚度凝胶的潜力。用这种方法制备了30微米厚6%(重量%)的凝胶。对锡标记的DNA低聚物进行了电泳,并用溅射引发共振电离光谱(SIRIS)进行了检测。研究了SIRIS和激光雾化RIS (LARIS)在240微米厚凝胶表面和深层取样中的应用。使用LARIS,凝胶的整个横截面可以雾化,可能允许完整的标签取样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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