Super-resolution Photo-Activated Localization Microscopy of Single Carbohydrate Binding Modules on Cellulose Nanofibers

Nanoscience and Nanoengineering, South Dakota School of Mines and Technology, 2 Michigan State University

steve_smith@mailaps.org

Abstract

The super-resolution method Photo Activated Localization Microscopy (PALM) is used to conduct an in vivo study of the binding affinity of polysaccharide-specific Carbohydrate Binding Modules (CBMs) to insoluble cellulose substrates. Two families of CBMs, namely TrCBM1 and CtCBM3, were modified to incorporate photo-activatable mCherry fluorescent protein (PAmCherry), and exposed to highly crystalline Valonia cellulose nano-fibrils. The resulting PALM images show CBMs binding along the nano-fibril long axis in a punctuated linear array, localized with, on average, 10 nm precision. Statistical analysis of the binding events results in nearest neighbor distributions between CBMs. A comparison between TrCBM1 and CtCBM3 reveals a similarity in the nearest neighbor distribution peaks but differences in the overall binding density. The former is attributed to steric hindrance among the CBMs on the nano-fibril whereas the latter is attributed to differences in the CBMs binding strength. These results are compared to similar distributions derived from TEM measurements of dried samples of CtCBM3-CdSs quantum dot bioconjugates and AFM images of CtCBM3-GFP bound to similar Valonia nano-fibrils.

Keywords

Microscopy Image Processing Nanotechnology
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@inproceedings{dgao116-a20, title = {Super-resolution Photo-Activated Localization Microscopy of Single Carbohydrate Binding Modules on Cellulose Nanofibers}, author = {A. Hor, D. Dagel, Q. Luu, M. Savaikar, S.- Y. Ding, S. Smith}, booktitle = {DGaO-Proceedings, 116. Jahrestagung}, year = {2015}, publisher = {Deutsche Gesellschaft für angewandte Optik e.V.}, issn = {1614-8436}, note = {Talk A20} }
116. Annual Conference of the DGaO · Brno · 2015