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Feb 16, 2024 - Göpfrich Group - Biophysical Engineering of Life
Illig, Maja; Jahnke, Kevin; Weise, Lukas P.; Scheffold, Marlene; Mersdorf, Ulrike; Drechsler, Hauke; Zhang, Yixin; Diez, Stefan; Kierfeld, Jan; Göpfrich, Kerstin, 2024, "Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]", https://doi.org/10.11588/data/ADYUNN, heiDATA, V1, UNF:6:AJdXI51lTUqvs4V/XCVPZQ== [fileUNF]
Contractile rings formed from cytoskeletal filaments mediate the division of cells. Ring formation is induced by specific crosslinkers, while contraction is typically associated with motor protein activity. Here, we engineer DNA nanotubes as mimics of cytoskeletal filaments and a...
Theoretical Physics(Heidelberg University - Institute of Theoretical Physics)
Oct 15, 2014
This Dataverse contains research data of the Institute for Theoretical Physics at Heidelberg University.
Jun 9, 2015 - Experimental Biophysics
Hausmann, Michael; Müller, Patrick; Hillebrandt, Sabina; Bach, Margund; Kaufmann, Rainer; Zhang, Yang, 2015, "SPDM data capturing radiation induced chromatin conformation changes", https://doi.org/10.11588/data/10031, heiDATA, V3
Using stably transfected HeLa cells expressing either green fluorescent protein (GFP) labelled histone H2B or yellow fluorescent protein (YFP) labelled histone H2A, we investigated the positioning of individual histone proteins in cell nuclei by means of high resolution localizat...
Feb 28, 2022 - Göpfrich Group - Biophysical Engineering of Life
Goepfrich, Kerstin; Walther, Tobias, 2022, "Printing and Erasing of DNA-based Photoresists inside Synthetic Cells [RESEARCH DATA]", https://doi.org/10.11588/data/MKOC9S, heiDATA, V1
In the pursuit to produce functioning synthetic cells from the bottom up, DNA nanotechnology has proven to be a powerful tool. However, the crowded yet highly organized arrangement in living cells, bridging from the nano- to the micron-scale, remains challenging to recreate with...
Mar 7, 2022 - Theoretical Physics
Li, Kunhe; Oiwa, Nestor Norio; Cordeiro, Claudette E.; Heermann, Dieter W., 2022, "Prediction and Comparative Analysis of CTCF Binding Sites based on a First Principle Approach [Research Data]", https://doi.org/10.11588/data/RDISCE, heiDATA, V1
The file contains the CTCF-DNA binding sites for complete genome of Homo sapiens (human), Mus musculus (mouse), Sus scrofa (pig), Capra hircus (goat), Aedes aegypti (dengue and yellow fever mosquito) and Drosophila melanogaster (fruit fly) using electronic nucleotide alignment. T...
Dec 4, 2023 - HITS MBM
Roessner Rita; Michelarakis, Nicholas; Gräter, Frauke; Aponte-Santamaría, Camilo, 2023, "Mechanical forces control the valency of the malaria adhesin VAR2CSA by exposing cryptic glycan binding sites [data]", https://doi.org/10.11588/data/EZHMDU, heiDATA, V1
Plasmodium falciparum (Pf) is responsible for the most lethal form of malaria. VAR2CSA is an adhesin protein expressed by this parasite at the membrane of infected erythrocytes for attachment to the placenta, leading to pregnancy-associated malaria. VAR2CSA is a large 355 kDa mul...
Mar 29, 2022 - Theoretical Physics
Li, Kunhe; Oiwa, Nestor N.; Mishra, Sujeet K.; Heermann, Dieter W., 2022, "Inter-Nucleosomal Potentials from Nucleosomal Positioning Data [Research Data]", https://doi.org/10.11588/data/H3KPEU, heiDATA, V1
This dataset accompanies the paper "Inter-Nucleosomal Potentials from Nucleosomal Positioning Data." In this paper, a systematic method to develop inter-nucleosomal potentials between nucleosomes along a chromosome is focused. To this purpose, a modified Lennard-Jones potential i...
HITS MBM(Heidelberg Institute for Theoretical Studies)
Nov 8, 2022
Data publications from the the Molecular Biomechanics (MBM) group at HITS. Shareholders of HITS are the “HITS-Stiftung”, Heidelberg University and the Karlsruhe Institute of Technology (KIT)
Göpfrich Group - Biophysical Engineering of Life(Cluster of Excellence "3D Matter Made to Order" and MPI for Medical Research)
Göpfrich Group - Biophysical Engineering of Life logo
Nov 30, 2021
The Göpfrich Group is located at at the Max Planck Institute for Medical Research and part of the Cluster of Excellence "3D Matter Made to Order".
Experimental Biophysics(Heidelberg University - Kirchhoff-Institute for Physics)
May 19, 2015
This Dataverse contains research data of the Kirchhoff-Institute for Physics at Heidelberg University.
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