| Literature DB >> 35032142 |
Mengdi Zhang1, Clayton Seitz1, Garrick Chang1, Fadil Iqbal1, Hua Lin1, Jing Liu1,2,3.
Abstract
The emergence of labeling strategies and live cell imaging methods enables the imaging of chromatin in living cells at single digit nanometer resolution as well as milliseconds temporal resolution. These technical breakthroughs revolutionize our understanding of chromatin structure, dynamics and functions. Single molecule tracking algorithms are usually preferred to quantify the movement of these intranucleus elements to interpret the spatiotemporal evolution of the chromatin. In this review, we will first summarize the fluorescent labeling strategy of chromatin in live cells which will be followed by a systematic comparison of live cell imaging instrumentation. With the proper microscope, we will discuss the image analysis pipelines to extract the biophysical properties of the chromatin. Finally, we expect to give practical suggestions to broad biologists on how to select methods and link to the model properly according to different investigation purposes.Entities:
Keywords: DNA damage; chromatin motion; particle tracking; single molecule imaging
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Year: 2022 PMID: 35032142 PMCID: PMC9035067 DOI: 10.1002/cbin.11762
Source DB: PubMed Journal: Cell Biol Int ISSN: 1065-6995 Impact factor: 4.473