首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay
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Chromosomics: Detection of Numerical and Structural Alterations in All 24 Human Chromosomes Simultaneously Using a Novel OctoChrome FISH Assay

机译:染色体组学:同时使用新型OctoChrome FISH检测法检测所有24个人类染色体中的数字和结构改变

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摘要

Fluorescence in situ hybridization (FISH) is a technique that allows specific DNA sequences to be detected on metaphase or interphase chromosomes in cell nuclei1. The technique uses DNA probes with unique sequences that hybridize to whole chromosomes or specific chromosomal regions, and serves as a powerful adjunct to classic cytogenetics. For instance, many earlier studies reported the frequent detection of increased chromosome aberrations in leukemia patients related with benzene exposure, benzene-poisoning patients, and healthy workers exposed to benzene, using classic cytogenetic analysis2. Using FISH, leukemia-specific chromosomal alterations have been observed to be elevated in apparently healthy workers exposed to benzene3-6, indicating the critical roles of cytogentic changes in benzene-induced leukemogenesis. Generally, a single FISH assay examines only one or a few whole chromosomes or specific loci per slide, so multiple hybridizations need to be conducted on multiple slides to cover all of the human chromosomes. Spectral karyotyping (SKY) allows visualization of the whole genome simultaneously, but the requirement for special software and equipment limits its application7. Here, we describe a novel FISH assay, OctoChrome-FISH, which can be applied for Chromosomics, which we define here as the simultaneous analysis of all 24 human chromosomes on one slide in human studies, such as chromosome-wide aneuploidy study (CWAS)8. The basis of the method, marketed by Cytocell as the Chromoprobe Multiprobe System, is an OctoChrome device that is divided into 8 squares, each of which carries three different whole chromosome painting probes (Figure 1). Each of the three probes is directly labeled with a different colored fluorophore, green (FITC), red (Texas Red), and blue (Coumarin). The arrangement of chromosome combinations on the OctoChrome device has been designed to facilitate the identification of the non-random structural chromosome alterations (translocations) found in the most common leukemias and lymphomas, for instance t(9;22), t(15;17), t(8;21), t(14;18)9. Moreover, numerical changes (aneuploidy) in chromosomes can be detected concurrently. The corresponding template slide is also divided into 8 squares onto which metaphase spreads are bound (Figure 2), and is positioned over the OctoChrome device. The probes and target DNA are denatured at high-temperature and hybridized in a humid chamber, and then all 24 human chromosomes can be visualized simultaneously. OctoChrome FISH is a promising technique for the clinical diagnosis of leukemia and lymphoma and for detection of aneuploidies in all chromosomes. We have applied this new Chromosomic approach in a CWAS study of benzene-exposed Chinese workers8,10.
机译:荧光原位杂交(FISH)技术可以检测细胞核 1 中期或相间染色体上的特定DNA序列。该技术使用具有独特序列的DNA探针,这些探针可与整个染色体或特定的染色体区域杂交,并且可以作为经典细胞遗传学的强大辅助工具。例如,许多早期研究报告使用经典的细胞遗传学分析方法 2 经常检测到与苯接触有关的白血病患者,苯中毒患者和接触苯的健康工人的染色体畸变增加。使用FISH,在暴露于苯 3-6 的显然健康的工人中,观察到白血病特异性染色体改变升高,表明细胞遗传学改变在苯诱导的白血病发生中的关键作用。通常,单个FISH分析每个载玻片仅检查一个或几个完整染色体或特定基因座,因此需要在多个载玻片上进行多重杂交以覆盖所有人类染色体。光谱核型分析(SKY)可以同时显示整个基因组,但是对特殊软件和设备的要求限制了其应用 7 。在这里,我们描述了一种可用于染色体组学的新颖的FISH测定法OctoChrome-FISH,在此我们将其定义为在人类研究(如全染色体非整倍性研究(CWAS))中对一张幻灯片上的所有24条人类染色体进行同时分析 8 。该方法的基础是Cytocell出售的Chromoprobe Multiprobe System,它是一个OctoChrome设备,该设备分为8个正方形,每个正方形都带有三个不同的整个染色体绘画探针(图1)。三种探针中的每一种均直接标记有不同颜色的荧光团,绿色(FITC),红色(德克萨斯红)和蓝色(香豆素)。已经设计了OctoChrome设备上的染色体组合安排,以方便识别最常见的白血病和淋巴瘤中发现的非随机结构性染色体改变(易位),例如t(9; 22),t(15; 17) ),t(8; 21),t(14; 18) 9 。此外,可以同时检测染色体的数值变化(非整倍性)。相应的模板载玻片也分为8个正方形,中期扩散分布在其上(图2),并位于OctoChrome设备上。探针和目标DNA在高温下变性并在潮湿的房间中杂交,然后可以同时显示所有24条人类染色体。 OctoChrome FISH是一种有前途的技术,可用于临床诊断白血病和淋巴瘤以及检测所有染色体中的非整倍性。我们将这种新的染色体组学方法应用于对苯接触的中国工人进行的CWAS研究中, 8,10

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