Literature DB >> 32870863

Characterizing chromatin packing scaling in whole nuclei using interferometric microscopy.

Aya Eid, Adam Eshein, Yue Li, Ranya Virk, David Van Derway, Di Zhang, Allen Taflove, Vadim Backman.   

Abstract

Chromatin is the macromolecular assembly containing the cell's genetic information, and its architectural conformation facilitates accessibility to activation sites and thus gene expression. We have developed an analytical framework to quantify chromatin structure with spectral microscopy. Chromatin structure can be described as a mass fractal, with packing scaling D up to specific genomic length scales. Considering various system geometries, we established a model to measure D with the interferometric technique partial wave spectroscopy (PWS) and validated the analysis using finite difference time domain to simulate the PWS system. Calculations of D were consistent with ground truth electron microscopy measurements, enabling a high-throughput, label-free approach to quantifying chromatin structure in the nanometer length scale regime.

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Year:  2020        PMID: 32870863      PMCID: PMC7951997          DOI: 10.1364/OL.400231

Source DB:  PubMed          Journal:  Opt Lett        ISSN: 0146-9592            Impact factor:   3.776


  8 in total

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3.  Dynamic Organization of Chromatin Domains Revealed by Super-Resolution Live-Cell Imaging.

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Review 4.  Review of interferometric spectroscopy of scattered light for the quantification of subdiffractional structure of biomaterials.

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6.  Disordered chromatin packing regulates phenotypic plasticity.

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Review 7.  Fractal dimension of chromatin: potential molecular diagnostic applications for cancer prognosis.

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  8 in total
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  3 in total

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