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Titlebook: RNA Chaperones; Methods and Protocol Tilman Heise Book 2020 Springer Science+Business Media, LLC, part of Springer Nature 2020 RNA biology.

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Disordered RNA-Binding Region Prediction with DisoRDPbind,ucture. Instead, their functions arise from structural ensembles. A common theme in IDR function is molecular recognition; IDRs mediate interactions with other proteins, RNA, and DNA. Many computational methods are available to predict IDRs from protein sequence, but relatively few are available for
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Delivering Molecular Beacons via an Electroporation-Based Approach Enables Live-Cell Imaging of SinIn contrast to genetically encoded probes that can be readily introduced into cells via standard transfection procedures, using MBs to obtain reliable intracellular measurements entails a reliable delivery method that maximizes MB entry while minimizing cell damage. One promising approach is micropo
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Characterizing Complex Nucleic Acid Interactions of LINE1 ORF1p by Single Molecule Force Spectrosco are inactive, a few still retain the ability to retrotranspose. L1 encodes two proteins, ORF1p and ORF2p, which are required for retrotransposition. During retrotransposition, ORF2p functions as the reverse transcriptase and the endonuclease. ORF1p is a nucleic acid chaperone that binds nucleic aci
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Isolation and Analysis of Bacterial Ribosomes Through Sucrose Gradient Ultracentrifugation,extra-ribosomal factors interact with the ribosome or its subunits to assist in these vital processes. Here we describe a method to isolate and analyze not only bacterial ribosomes but also their associated factors, providing insights into translation regulation. This detailed protocol allows the se
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Book 2020ssays. Beginning with a section on a number of bacterial proteins for study, the volume also explores proteins from eukaryotic cells and how to delve into the complex interactions between RNA chaperones and the folding and unfolding of proteins. Written for the highly successful .Methods in Molecula
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