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Titlebook: RNA Nanostructures; Methods and Protocol Eckart Bindewald,Bruce A. Shapiro Book 2017 Springer Science+Business Media LLC 2017 RNA Architect

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Angelica N. Martins,Weina Ke,Vaishnavi Jawahar,Morriah Striplin,Caryn Striplin,Eric O. Freed,Kirill teracting system adsorbate + substrate, i.e., the molecular orbital (MO) scheme, is certainly the more familiar, as indeed it is in molecular quantum mechanics. It is however interesting to observe that the other approach of expressing the many-electron ground state of the interacting system in term
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Computational Prediction of the Immunomodulatory Potential of RNA Sequences,tential of RNA sequences. This server integrates a number of modules that allow users to perform various tasks including (1) generation of RNA analogs with reduced immunotoxicity, (2) identification of highly immunostimulatory regions in RNA sequence, and (3) virtual screening. This server may also
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Supported Fluid Lipid Bilayer as a Scaffold to Direct Assembly of RNA Nanostructures,us facilitate the building of more complex 3D structures. The bilayer-based approach can be extended to other programmable RNA or DNA objects to construct intricate structures, such as 2D grids or 3D cages, with high precision.
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Evaluation of Thermal Stability of RNA Nanoparticles by Temperature Gradient Gel Electrophoresis (T factors such as the presence of a denaturing agent (e.g., urea), the presence of monovalent or divalent metal ions, and the pH of the solvent. In this chapter, we describe the experimental setup and the analysis of the thermal stability of RNA NPs in native conditions using a modified version of a
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Kheiria Benkato,Benjamin O’Brien,My N. Bui,Daniel L. Jasinski,Peixuan Guo,Emil F. Khisamutdinovf Helmut Lotsch and Manuel Cardona. Berkeley, CA M.L. Cohen Minneapolis, MN, J.R. Chelikowsky March 1988 VII Contents 1. Introduction...........................978-3-642-97080-1Series ISSN 0171-1873 Series E-ISSN 2197-4179
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Gandharva Nagpal,Kumardeep Chaudhary,Sandeep Kumar Dhanda,Gajendra Pal Singh Raghava
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