Chang Ta-Chau, Chang Cheng-Chung
Institute of Atomic and Molecular Sciences, and Genomic Research Center, Academia Sinica, Taipei, Taiwan, Republic of China.
Methods Mol Biol. 2010;608:183-206. doi: 10.1007/978-1-59745-363-9_12.
Verification of the existence of quadruplex structure in native human telomeres and determination of the major structure of d(T(2)AG(3))(4) (H24) in K(+) solution are the major questions regarding the structure of human telomeres. We have synthesized a fluorescent probe of 3,6-bis(1-methyl-4-vinylpyridinium)carbazole diiodide (BMVC) that has a very high binding affinity for G-quadruplex H24. BMVC stabilizes quadruplex structures and acts as a sensitive probe to the local environment. Although the circular dichroism patterns of H24 are different in Na(+) and K(+) solutions, similar binding behaviors of BMVC to H24 in these solutions led us to suggest that the major G-quadruplex structure of H24 in K(+) solution is very likely similar to that in Na(+) solution. Of particular interest is the fluorescent band detected at -575 nm in quadruplex H24 and at -545 nm in duplex DNA. In addition, the intensity of BMVC fluorescence increases by two orders of magnitudes upon interaction with either duplex or G-quadruplex DNA. BMVC has a greater binding preference for G-quadruplex H24 than for duplex DNA. Analyzing the BMVC fluorescence at the ends of metaphase chromosomes and other regions of chromosomes allowed us to verify the presence of G-quadruplex structure in human telomeres for the first time. Using fluorescence lifetime imaging microscopy, the longer decay time of BMVC in G-quadruplex H24 than in duplex DNA allowed us to map the G-quadruplex structure in human metaphase chromosomes.
验证天然人类端粒中四链体结构的存在以及确定钾离子溶液中d(T(2)AG(3))(4)(H24)的主要结构是关于人类端粒结构的主要问题。我们合成了一种3,6-双(1-甲基-4-乙烯基吡啶鎓)咔唑二碘化物(BMVC)荧光探针,它对G-四链体H24具有非常高的结合亲和力。BMVC能稳定四链体结构,并作为对局部环境敏感的探针。尽管H24在钠离子和钾离子溶液中的圆二色性模式不同,但BMVC在这些溶液中与H24的类似结合行为使我们认为,钾离子溶液中H24的主要G-四链体结构很可能与钠离子溶液中的相似。特别有趣的是在四链体H24中-575nm处和双链DNA中-545nm处检测到的荧光带。此外,BMVC与双链或G-四链体DNA相互作用时,其荧光强度增加两个数量级。BMVC对G-四链体H24的结合偏好大于双链DNA。分析中期染色体末端和染色体其他区域的BMVC荧光,使我们首次验证了人类端粒中G-四链体结构的存在。使用荧光寿命成像显微镜,BMVC在G-四链体H24中的衰减时间比在双链DNA中更长,这使我们能够绘制人类中期染色体中的G-四链体结构图谱。