Literature DB >> 17259276

Deconvolving single-molecule intensity distributions for quantitative microscopy measurements.

Sarah A Mutch1, Bryant S Fujimoto, Christopher L Kuyper, Jason S Kuo, Sandra M Bajjalieh, Daniel T Chiu.   

Abstract

In fluorescence microscopy, images often contain puncta in which the fluorescent molecules are spatially clustered. This article describes a method that uses single-molecule intensity distributions to deconvolve the number of fluorophores present in fluorescent puncta as a way to "count" protein number. This method requires a determination of the correct statistical relationship between the single-molecule and single-puncta intensity distributions. Once the correct relationship has been determined, basis histograms can be generated from the single-molecule intensity distribution to fit the puncta distribution. Simulated data were used to demonstrate procedures to determine this relationship, and to test the methodology. This method has the advantages of single-molecule measurements, providing both the mean and variation in molecules per puncta. This methodology has been tested with the avidin-biocytin binding system for which the best-fit distribution of biocytins in the sample puncta was in good agreement with a bulk determination of the avidin-biocytin binding ratio.

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Year:  2007        PMID: 17259276      PMCID: PMC1831712          DOI: 10.1529/biophysj.106.101428

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  33 in total

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  37 in total

1.  Protein quantification at the single vesicle level reveals that a subset of synaptic vesicle proteins are trafficked with high precision.

Authors:  Sarah A Mutch; Patricia Kensel-Hammes; Jennifer C Gadd; Bryant S Fujimoto; Richard W Allen; Perry G Schiro; Robert M Lorenz; Christopher L Kuyper; Jason S Kuo; Sandra M Bajjalieh; Daniel T Chiu
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Journal:  Biophys J       Date:  2019-08-06       Impact factor: 4.033

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Review 9.  Single molecule fluorescence approaches shed light on intracellular RNAs.

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10.  Dissection of molecular assembly dynamics by tracking orientation and position of single molecules in live cells.

Authors:  Shalin B Mehta; Molly McQuilken; Patrick J La Riviere; Patricia Occhipinti; Amitabh Verma; Rudolf Oldenbourg; Amy S Gladfelter; Tomomi Tani
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