Microtubule curling as an efficient readout to uncover fundamental concepts of axonal cell biology is a research paper published in bioRxiv (Cold Spring Harbor Laboratory) (2025). On theSindex it has a DataRank of 0.
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Grant: BB/P020151/1, BB/L000717/1, BB/M007553/1, BB/I002448/1, BB/C515998/1, BB/R018960/1, BB/W016907/1, BB/D526561/1, BB/T008725/1, UKRI1894/APP46392
Wellcome Trust
Grant: 077748/Z/05/Z
German Research Council
Grant: VO 2071/1-1
Grant: ECF-2017-247
Grant: RGS\R2\222151
Grant: SBF008\1140
Wellcome Trust
Grant: 087742/Z/08/Z
UK Research and Innovation
Grant: BB/T008725/1
Manchester DTP3
Wellcome Trust
Grant: 077748
Molecular mechanisms of shortstop function essential for neuronal growth.
Wellcome Trust
Grant: 087742
Establishment of a Drosophila Core facility.
UK Research and Innovation
Grant: BB/L000717/1
Understanding microtubule regulation during the making and maintenance of axons
UK Research and Innovation
Grant: BB/D526561/1
BBSRC Doctoral Training Grant - 2005
National Institutes of Health
Grant: 3P40OD018537-04S1
Bloomington Drosophila Stock Center at Indiana University
UK Research and Innovation
Grant: BB/M007553/1
The fundamental roles of axonal actin during neuronal growth and longevity
UK Research and Innovation
Grant: BB/P020151/1
The mechanistic basis and potential disease relevance of microtubule disorganisation in axons
UK Research and Innovation
Grant: BB/I002448/1
The role of spectraplakins as key integrators of axonal microtubule networks
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