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izvor podataka: crosbi

Biomechanics of chromosome alignment at the spindle midplane (CROSBI ID 295286)

Prilog u časopisu | pregledni rad (znanstveni) | međunarodna recenzija

Risteski, Patrik ; Jagrić, Mihaela ; Pavin, Nenad ; Tolić, Iva M. Biomechanics of chromosome alignment at the spindle midplane // Current biology, 31 (2021), 10; 574-585. doi: 10.1016/j.cub.2021.03.082

Podaci o odgovornosti

Risteski, Patrik ; Jagrić, Mihaela ; Pavin, Nenad ; Tolić, Iva M.

engleski

Biomechanics of chromosome alignment at the spindle midplane

During metaphase, chromosomes are aligned in a lineup at the equatorial plane of the spindle to ensure synchronous poleward movement of chromatids in anaphase and proper nuclear reformation at the end of mitosis. Chromosome alignment relies on microtubules, several types of motor protein and numerous other microtubule- associated and regulatory proteins. Because of the multitude of players involved, the mechanisms of chromosome alignment are still under debate. Here, we discuss the current models of alignment based on poleward pulling forces exerted onto sister kinetochores by kinetochore microtubules, which show length-dependent dynamics and undergo poleward flux, and polar ejection forces that push the chromosome arms away from the pole. We link these models with the recent ideas based on mechanical coupling between bridging and kinetochore microtubules, where sliding of bridging microtubules promotes overlap length-dependent sliding of kinetochore fibers and thus the alignment of sister kinetochores at the spindle equator. Finally, we discuss theoretical models of forces acting on chromosomes during metaphase.

mitosis ; chromosome alignment ; microtubules ; spindle ; kinesins

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Podaci o izdanju

31 (10)

2021.

574-585

objavljeno

0960-9822

1879-0445

10.1016/j.cub.2021.03.082

Povezanost rada

Biologija, Fizika

Poveznice
Indeksiranost