@data{10.22002/D1.20298
title = {InteractiveResource: The SSU Processome Component Utp25p is a Pseudohelicase},
author = {J. Michael Charette},
doi = {10.22002/D1.20298},
abstract = {Extended figure 7: Alignment of the RecA-like domains 2 of Utp25 and of eIF4A. ChimeraX file of the aligned domains 2 of the AlphaFold yeast Utp25 (P40498) and yeast eIF4A (1FUU; (Caruthers et al. 2000)) crystal structure.},
year = {2022},
}
@data{10.22002/D1.20297
title = {InteractiveResource: The SSU Processome Component Utp25p is a Pseudohelicase},
author = {J. Michael Charette},
doi = {10.22002/D1.20297},
abstract = {Extended figure 6: Alignment of the RecA-like domains 1 of Utp25 and of eIF4A. ChimeraX file of the aligned domains 1 of the AlphaFold yeast Utp25 (P40498) and yeast eIF4A (1FUU; (Caruthers et al. 2000)) crystal structure.},
year = {2022},
}
@data{10.22002/D1.20296
title = {InteractiveResource: The SSU Processome Component Utp25p is a Pseudohelicase},
author = {J. Michael Charette},
doi = {10.22002/D1.20296},
abstract = {Extended figure 5: Alignment of the full-length Utp25 and eIF4A structures. ChimeraX file of the aligned full-length (containing RecA domains 1 and 2) AlphaFold yeast Utp25 (P40498) and yeast eIF4A (1FUU; (Caruthers et al. 2000)) crystal structure. Note the structural similarity of domains 1 of Utp25 and of eIF4A and similarly of domains 2 of both proteins. Structural overlap is only possible for one or the other of the two RecA-like domains but not for both domains simultaneously.},
year = {2022},
}
@data{10.22002/D1.20294
title = {InteractiveResource: The SSU Processome Component Utp25p is a Pseudohelicase},
author = {J. Michael Charette},
doi = {10.22002/D1.20294},
abstract = {Extended figure 3: The yeast and human AlphaFold Utp25 structures are conserved. ChimeraX file of the aligned yeast (P40498) and human (Q68CQ4) AlphaFold Utp25 structures shows that they are clearly superimposable and thus conserved in structure.},
year = {2022},
}
@data{10.22002/D1.20253
title = {InteractiveResource: Photo Phenosizer, a rapid machine learning-based method to measure cell dimensions in fission yeast},
author = {Martin Vo},
doi = {10.22002/D1.20253},
abstract = {Link to the Github},
year = {2022},
}
@data{10.22002/D1.20250
title = {InteractiveResource: Photo Phenosizer, a rapid machine learning-based method to measure cell dimensions in fission yeast},
author = {Martin Vo},
doi = {10.22002/D1.20250},
abstract = {Link to the Github},
year = {2022},
}
@data{10.22002/D1.20167
title = {Atlas of Bacterial and Archaeal Cell Structure - Offline Version 2.2},
author = {Oikonomou, Catherine and Jensen, Grant},
doi = {10.22002/D1.20167},
abstract = {The offline version 2.2 of “The Atlas of Bacterial & Archaeal Cell Structure” by Catherine M. Oikonomou & Grant J. Jensen
Cite this record as:
Oikonomou, C., & Jensen, G. (2022). Atlas of Bacterial and Archaeal Cell Structure - Offline Version 2.2 (Version v2.2). CaltechDATA. https://doi.org/10.22002/D1.20167
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},
year = {2022},
}
@data{10.22002/D1.2179
title = {Microprobe Data for Xenoliths Web Application Source},
author = {Quinn, Daven P.},
doi = {10.22002/D1.2179},
abstract = {This application allows the inspection and tagging of electron microprobe data for samples gathered at Crystal Knob, in the Salinian Block. You can view the interactive application at https://doi.org/10.7907/16e8-hn89
Cite this record as:
Quinn, D. P. (2021). Microprobe Data for Xenoliths Web Application Source (Version 1.0). CaltechDATA. https://doi.org/10.22002/D1.2179
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},
year = {2021},
}
@data{10.22002/D1.1883
title = {Atlas of Bacterial and Archaeal Cell Structure - Offline Version 1.1},
author = {Oikonomou, Catherine and Jensen, Grant},
doi = {10.22002/D1.1883},
abstract = {The offline version 1.1 of “The Atlas of Bacterial & Archaeal Cell Structure” by Catherine M. Oikonomou & Grant J. Jensen
Cite this record as:
Oikonomou, C., & Jensen, G. (2021). Atlas of Bacterial and Archaeal Cell Structure - Offline Version 1.1 (Version v1.1). CaltechDATA. https://doi.org/10.22002/D1.1883
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Download Citation
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},
year = {2021},
}