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General Protocol for Constructing Molecular Models of Nanodiscs.

Lisbeth R KjølbyeLeonardo De MariaTsjerk A WassenaarHaleh AbdizadehSiewert-Jan MarrinkJesper Ferkinghoff-BorgBirgit Schiøtt
Published in: Journal of chemical information and modeling (2021)
Nanodisc technology is increasingly being applied for structural and biophysical studies of membrane proteins. In this work, we present a general protocol for constructing molecular models of nanodiscs for molecular dynamics simulations. The protocol is written in python and based on geometric equations, making it fast and easy to modify, enabling automation and customization of nanodiscs in silico. The novelty being the ability to construct any membrane scaffold protein (MSP) variant fast and easy given only an input sequence. We validated and tested the protocol by simulating seven different nanodiscs of various sizes and with different membrane scaffold proteins, both circularized and noncircularized. The structural and biophysical properties were analyzed and shown to be in good agreement with previously reported experimental data and simulation studies.
Keyphrases
  • molecular dynamics simulations
  • randomized controlled trial
  • molecular docking
  • single molecule
  • machine learning
  • case control
  • small molecule
  • protein protein
  • plasmodium falciparum