Versatile design and synthesis platform for visualizing genomes with Oligopaint FISH probes

Brian J. Beliveau(Harvard University), Eric F. Joyce(Harvard University), Nicholas Apostolopoulos(Harvard University), Feyza Yilmaz(Harvard University), Chamith Y. Fonseka(Harvard University), Ruth B. McCole(Harvard University), Yiming Chang(Harvard University), Jin Billy Li(Harvard University), T. Niroshini Senaratne(Harvard University), Benjamin R. Williams(Harvard University), Jean-Marie Rouillard(University of Michigan), Chao‐ting Wu(Harvard University)
Proceedings of the National Academy of Sciences
December 11, 2012
Cited by 497Open Access
Full Text

Abstract

A host of observations demonstrating the relationship between nuclear architecture and processes such as gene expression have led to a number of new technologies for interrogating chromosome positioning. Whereas some of these technologies reconstruct intermolecular interactions, others have enhanced our ability to visualize chromosomes in situ. Here, we describe an oligonucleotide- and PCR-based strategy for fluorescence in situ hybridization (FISH) and a bioinformatic platform that enables this technology to be extended to any organism whose genome has been sequenced. The oligonucleotide probes are renewable, highly efficient, and able to robustly label chromosomes in cell culture, fixed tissues, and metaphase spreads. Our method gives researchers precise control over the sequences they target and allows for single and multicolor imaging of regions ranging from tens of kilobases to megabases with the same basic protocol. We anticipate this technology will lead to an enhanced ability to visualize interphase and metaphase chromosomes.


Related Papers

No related papers found

Powered by citation graph analysis