microtubule dynamics
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eLife ◽  
2022 ◽  
Vol 11 ◽  
Author(s):  
Thomas S McAlear ◽  
Susanne Bechstedt

Cells increase microtubule dynamics to make large rearrangements to their microtubule cytoskeleton during cell division. Changes in microtubule dynamics are essential for the formation and function of the mitotic spindle, and misregulation can lead to aneuploidy and cancer. Using in vitro reconstitution assays we show that the mitotic spindle protein Cytoskeleton-Associated Protein 2 (CKAP2) has a strong effect on nucleation of microtubules by lowering the critical tubulin concentration 100-fold. CKAP2 increases the apparent rate constant ka of microtubule growth by 50-fold and increases microtubule growth rates. In addition, CKAP2 strongly suppresses catastrophes. Our results identify CKAP2 as the most potent microtubule growth factor to date. These finding help explain CKAP2's role as an important spindle protein, proliferation marker, and oncogene.


Author(s):  
Christopher Wittmann ◽  
Anastasiia S. Sivchenko ◽  
Felix Bacher ◽  
Kelvin K. H. Tong ◽  
Navjot Guru ◽  
...  

2021 ◽  
Author(s):  
Rui Chen ◽  
Shiyue Du ◽  
Yanyi Yao ◽  
Lu Zhang ◽  
Junyu Luo ◽  
...  
Keyword(s):  

2021 ◽  
Author(s):  
Francesca Rossi ◽  
Manuel Beltran ◽  
Michela Damizia ◽  
Chiara Grelloni ◽  
Alessio Colantoni ◽  
...  

Cancers ◽  
2021 ◽  
Vol 13 (23) ◽  
pp. 5995
Author(s):  
Girish Rajendraprasad ◽  
Susana Eibes ◽  
Claudia Guasch Boldú ◽  
Marin Barisic

Microtubule-targeting agents (MTAs) have been used for decades to treat different hematologic and solid cancers. The mode of action of these drugs mainly relies on their ability to bind tubulin subunits and/or microtubules and interfere with microtubule dynamics. In addition to its MTH1-inhibiting activity, TH588 has been recently identified as an MTA, whose anticancer properties were shown to largely depend on its microtubule-targeting ability. Although TH588 inhibited tubulin polymerization in vitro and reduced microtubule plus-end mobility in interphase cells, its effect on microtubule dynamics within the mitotic spindle of dividing cells remained unknown. Here, we performed an in-depth analysis of the impact of TH588 on spindle-associated microtubules and compared it to the effect of low-dose nocodazole. We show that both treatments reduce microtubule turnover within the mitotic spindle. This microtubule-stabilizing effect leads to premature formation of kinetochore-microtubule end-on attachments on uncongressed chromosomes, which consequently cannot be transported to the cell equator, thereby delaying cell division and leading to cell death or division with uncongressed chromosomes.


2021 ◽  
Vol 9 (1) ◽  
Author(s):  
Maximilian Middelkamp ◽  
Lisa Ruck ◽  
Christoph Krisp ◽  
Piotr Sumisławski ◽  
Behnam Mohammadi ◽  
...  

AbstractLIN28A overexpression has been identified in malignant brain tumors called embryonal tumors with multilayered rosettes (ETMR) but its specific role during brain development remains largely unknown. Radial glia cells of the ventricular zone (VZ) are proposed as a cell of origin for ETMR. We asked whether an overexpression of LIN28A in such cells might affect brain development or result in the formation of brain tumors.Constitutive overexpression of LIN28A in hGFAP-cre::lsl-Lin28A (GL) mice led to a transient increase of proliferation in the cortical VZ at embryonic stages but no postnatal brain tumor formation. Postnatally, GL mice displayed a pyramidal cell layer dispersion of the hippocampus and altered spine and dendrite morphology, including reduced dendritic spine densities in the hippocampus and cortex. GL mice displayed hyperkinetic activity and differential quantitative MS-based proteomics revealed altered time dependent molecular functions regarding mRNA processing and spine morphogenesis. Phosphoproteomic analyses indicated a downregulation of mTOR pathway modulated proteins such as Map1b being involved in microtubule dynamics.In conclusion, we show that Lin28A overexpression transiently increases proliferation of neural precursor cells but it is not sufficient to drive brain tumors in vivo. In contrast, Lin28A impacts on protein abundancy patterns related to spine morphogenesis and phosphorylation levels of proteins involved in microtubule dynamics, resulting in decreased spine densities of neurons in the hippocampus and cortex as well as in altered behavior. Our work provides new insights into the role of LIN28A for neuronal morphogenesis and development and may reveal future targets for treatment of ETMR patients.


2021 ◽  
Vol 344 (3) ◽  
pp. 297-310
Author(s):  
Sarah Triclin ◽  
Daisuke Inoue ◽  
Jérémie Gaillard ◽  
Laurent Blanchoin ◽  
Manuel Théry

2021 ◽  
Vol 116 ◽  
pp. 105297
Author(s):  
Ayad A. Al-Hamashi ◽  
Radhika Koranne ◽  
Samkeliso Dlamini ◽  
Abdulateef Alqahtani ◽  
Endri Karaj ◽  
...  

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