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Journal of Applied Crystallography|June 7, 2014
A suite of software for processing MicroED data of extremely small protein crystalsMatthew G Iadanza, Tamir Gonen
Elife|November 21, 2013
Three-dimensional electron crystallography of protein microcrystalsDan Shi, Brent L Nannenga, Matthew G Iadanza, et al.
Current Protocols in Protein Science|April 3, 2013
Overview of electron crystallography of membrane proteins: crystallization and screening strategies using negative stain electron microscopyBrent L Nannenga, Matthew G Iadanza, Breanna S Vollmar, et al.
Nature Communications|August 5, 2014
Proton-coupled sugar transport in the prototypical major facilitator superfamily protein XylEGoragot Wisedchaisri, Min-Sun Park, Matthew G Iadanza, et al.
Scientific Reports|February 13, 2016
MpUL-multi: Software for Calculation of Amyloid Fibril Mass per Unit Length from TB-TEM ImagesMatthew G Iadanza, Matthew P Jackson, Sheena E Radford, et al.
Journal of Visualized Experiments : Jove|February 15, 2018
Variations on Negative Stain Electron Microscopy Methods: Tools for Tackling Challenging SystemsCharlotte A Scarff, Martin J G Fuller, Rebecca F Thompson, et al.
Nature Protocols|November 30, 2018
Collection, pre-processing and on-the-fly analysis of data for high-resolution, single-particle cryo-electron microscopyRebecca F Thompson, Matthew G Iadanza, Emma L Hesketh, et al.
Nature Structural & Molecular Biology|August 14, 2012
The structure of purified kinetochores reveals multiple microtubule-attachment sitesShane Gonen, Bungo Akiyoshi, Matthew G Iadanza, et al.
Nature Reviews. Molecular Cell Biology|September 22, 2018
A new era for understanding amyloid structures and diseaseMatthew G Iadanza, Matthew P Jackson, Eric W Hewitt, et al.
Nature Structural & Molecular Biology|September 15, 2020
Fibril structures of diabetes-related amylin variants reveal a basis for surface-templated assemblyRodrigo Gallardo, Matthew G Iadanza, Yong Xu, et al.
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