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Preparation of Drosophila Polytene Chromosome Squashes for Antibody Labeling

机译:果蝇多肽南瓜的抗体标记制备。

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摘要

Drosophila has long been a favorite model system for studying the relationship between chromatin structure and gene regulation due to the cytological advantages provided by the giant salivary gland polytene chromosomes of third instar larvae. In this tissue the chromosomes undergo many rounds of replication in the absence of cell division giving rise to approximately 1000 copies. The DNA remains aligned after each replicative cycle resulting in greatly enlarged chromosomes that provide a unique opportunity to correlate chromatin morphology with the localization of specific proteins. Consequently, there has been a high level of interest in defining the epigenetic modifications present at different genes and at different stages of the transcription process. An important tool for such studies is the labeling of polytene chromosomes with antibodies to the enzyme, transcription factor, or histone modification of interest. This video protocol illustrates the squash technique used in the Johansen laboratory to prepare Drosophila polytene chromosomes for antibody labeling.
机译:果蝇长期以来一直是研究染色质结构与基因调控之间关系的最常用模型系统,这是由于三龄幼虫的唾液腺polytene染色体具有巨大的细胞学优势。在这种组织中,染色体在没有细胞分裂的情况下经历了许多轮复制,从而产生了大约1000个拷贝。在每个复制周期后,DNA保持对齐状态,从而导致染色体大大扩增,从而提供了将染色质形态与特定蛋白质定位相关联的独特机会。因此,人们对定义存在于转录过程的不同基因和不同阶段的表观遗传修饰有很高的兴趣。此类研究的重要工具是用针对感兴趣的酶,转录因子或组蛋白修饰的抗体标记多态染色体。该视频协议说明了Johansen实验室中使用的壁球技术,以制备果蝇多染色体染色体以进行抗体标记。

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