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通过能量转移增强人类中期染色体的带型模式。

Enhancement of banding patterns in human metaphase chromosomes by energy transfer.

作者信息

Sahar E, Latt S A

出版信息

Proc Natl Acad Sci U S A. 1978 Nov;75(11):5650-4. doi: 10.1073/pnas.75.11.5650.

Abstract

Intermolecular energy transfer between appropriately chosen pairs of dyes can be used to induce or enhance banding patterns in human metaphase chromosomes. Energy transfer, calibrated by fluorometric studies on soluble dye.DNA complexes, can also be detected by photometric measurements on cytological preparations of metaphase chromosomes stained with pairs of fluorochromes. If a fluorescent dye with one type of binding or quantum yield specificity (e.g., quinacrine, 33258 Hoechst, or chromomycin A(3)) is employed together with a counterstain (e.g., actinomycin D, 7-aminoactinomycin D, or methyl green) exhibiting a complementary base pair binding specificity and satisfying spectral overlap criteria for energy transfer, contrast in fluorescence from the first dye is enhanced in specific subsets of standard chromosome bands. Extensive energy transfer presumably suppress donor fluorescence except in chromosomal region containing clusters of at least 20 base pairs predominantly of one type, within which the donor but not the acceptor can bind and fluoresce. Quinacrine-bright polymorphic regions are especially resistant to fluorescence quenching by counterstains with G.C binding specificity, strengthening the evidence that these latter regions are highly enriched for A.T base pair clusters. The ability to highlight selectively many such polymorphic regions may prove of further, practical, utility in a number of cytogenetic problems.

摘要

在适当选择的染料对之间进行分子间能量转移,可用于诱导或增强人类中期染色体的带型。通过对可溶性染料 - DNA复合物进行荧光测定校准的能量转移,也可通过对用荧光染料对染色的中期染色体细胞学标本进行光度测量来检测。如果将具有一种结合类型或量子产率特异性的荧光染料(例如喹吖因、33258 Hoechst或放线菌素A(3))与具有互补碱基对结合特异性且满足能量转移光谱重叠标准的复染剂(例如放线菌素D、7 - 氨基放线菌素D或甲基绿)一起使用,标准染色体带的特定子集中第一种染料的荧光对比度会增强。广泛的能量转移可能会抑制供体荧光,除非在含有至少20个主要为一种类型的碱基对簇的染色体区域内,在该区域内供体而非受体可以结合并发出荧光。喹吖因明亮的多态性区域对具有G.C结合特异性的复染剂的荧光猝灭特别有抗性,这进一步证明这些区域富含A.T碱基对簇。选择性突出许多此类多态性区域的能力可能在许多细胞遗传学问题中具有进一步的实际用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9fd/393025/7804c3b4dfc7/pnas00021-0413-a.jpg

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