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Biorxiv : the Preprint Server for Biology
|
September 5, 2025
Pathogenic KIF1A R350 Variants Disrupt A Conserved Kinesin-Tubulin Salt Bridge
Abhipsa Shatarupa, Lu Rao, Ana Asenjo, et al.
The Journal of Cell Biology
|
September 27, 2006
Autoinhibition regulates the motility of the C. elegans intraflagellar transport motor OSM-3
Miki Imanishi, Nicholas F Endres, Arne Gennerich, et al.
Biomolecules
|
May 28, 2025
Distinct Clinical Phenotypes in KIF1A-Associated Neurological Disorders Result from Different Amino Acid Substitutions at the Same Residue in KIF1A
Lu Rao, Wenxing Li, Yufeng Shen, et al.
Biorxiv : the Preprint Server for Biology
|
March 10, 2025
Distinct Clinical Phenotypes in KIF1A-Associated Neurological Disorders Result from Different Amino Acid Substitutions at the Same Residue in KIF1A
Lu Rao, Wenxing Li, Yufeng Shen, et al.
Science Advances
|
April 15, 2020
Force production of human cytoplasmic dynein is limited by its processivity
Sibylle Brenner, Florian Berger, Lu Rao, et al.
Nature Communications
|
March 30, 2026
Pathogenic KIF1A R350 mutations disrupt a conserved and conformation-dependent kinesin-tubulin salt bridge
Abhipsa Shatarupa, Lu Rao, Ana B Asenjo, et al.
Cell
|
November 30, 2007
Force-induced bidirectional stepping of cytoplasmic dynein
Arne Gennerich, Andrew P Carter, Samara L Reck-Peterson, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 6, 2015
Cytoplasmic dynein regulates its attachment to microtubules via nucleotide state-switched mechanosensing at multiple AAA domains
Matthew P Nicholas, Florian Berger, Lu Rao, et al.
Journal of Cell Science
|
June 11, 2021
Sequences in the stalk domain regulate auto-inhibition and ciliary tip localization of the immotile kinesin-4 KIF7
T Lynne Blasius, Yang Yue, RaghuRam Prasad, et al.
The Journal of Biological Chemistry
|
December 21, 2010
Kinesin-73 is a processive motor that localizes to Rab5-containing organelles
Thomas M Huckaba, Arne Gennerich, James E Wilhelm, et al.
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Showing results (21-30 of 46) with videos related to
Sort By:
Page
of 5
Biorxiv : the Preprint Server for Biology
|
September 5, 2025
Pathogenic KIF1A R350 Variants Disrupt A Conserved Kinesin-Tubulin Salt Bridge
Abhipsa Shatarupa, Lu Rao, Ana Asenjo, et al.
The Journal of Cell Biology
|
September 27, 2006
Autoinhibition regulates the motility of the C. elegans intraflagellar transport motor OSM-3
Miki Imanishi, Nicholas F Endres, Arne Gennerich, et al.
Biomolecules
|
May 28, 2025
Distinct Clinical Phenotypes in KIF1A-Associated Neurological Disorders Result from Different Amino Acid Substitutions at the Same Residue in KIF1A
Lu Rao, Wenxing Li, Yufeng Shen, et al.
Biorxiv : the Preprint Server for Biology
|
March 10, 2025
Distinct Clinical Phenotypes in KIF1A-Associated Neurological Disorders Result from Different Amino Acid Substitutions at the Same Residue in KIF1A
Lu Rao, Wenxing Li, Yufeng Shen, et al.
Science Advances
|
April 15, 2020
Force production of human cytoplasmic dynein is limited by its processivity
Sibylle Brenner, Florian Berger, Lu Rao, et al.
Nature Communications
|
March 30, 2026
Pathogenic KIF1A R350 mutations disrupt a conserved and conformation-dependent kinesin-tubulin salt bridge
Abhipsa Shatarupa, Lu Rao, Ana B Asenjo, et al.
Cell
|
November 30, 2007
Force-induced bidirectional stepping of cytoplasmic dynein
Arne Gennerich, Andrew P Carter, Samara L Reck-Peterson, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 6, 2015
Cytoplasmic dynein regulates its attachment to microtubules via nucleotide state-switched mechanosensing at multiple AAA domains
Matthew P Nicholas, Florian Berger, Lu Rao, et al.
Journal of Cell Science
|
June 11, 2021
Sequences in the stalk domain regulate auto-inhibition and ciliary tip localization of the immotile kinesin-4 KIF7
T Lynne Blasius, Yang Yue, RaghuRam Prasad, et al.
The Journal of Biological Chemistry
|
December 21, 2010
Kinesin-73 is a processive motor that localizes to Rab5-containing organelles
Thomas M Huckaba, Arne Gennerich, James E Wilhelm, et al.
Page
of 5