4.7 Article

Spindle microtubules generate tension-dependent changes in the distribution of inner kinetochore proteins

期刊

JOURNAL OF CELL BIOLOGY
卷 193, 期 1, 页码 125-140

出版社

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.201012050

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资金

  1. Ministry of Education, Culture, Sports, Science and Technology (MEXT) of Japan
  2. Cabinet Office of the Government of Japan
  3. Precursory Research for Embryonic Science and Technology of the Japan Science and Technology Agency
  4. MEXT
  5. International Human Frontier Science Program Organization
  6. Grants-in-Aid for Scientific Research [23121530, 22570008, 23770128, 23247016] Funding Source: KAKEN

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The kinetochore forms a dynamic interface with microtubules from the mitotic spindle. Live-cell light microscopy-based observations on the dynamic structural changes within the kinetochore suggest that molecular rearrangements within the kinetochore occur upon microtubule interaction. However, the source of these rearrangements is still unclear. In this paper, we analyze vertebrate kinetochore ultrastructure by immunoelectron microscopy (EM) in the presence or absence of tension from spindle microtubules. We found that the inner kinetochore region defined by CENP-A, CENP-C, CENP-R, and the C-terminal domain of CENP-T is deformed in the presence of tension, whereas the outer kinetochore region defined by Ndc80, Mis12, and CENP-E is not stretched even under tension. Importantly, based on EM, fluorescence microscopy, and in vitro analyses, we demonstrated that the N and C termini of CENP-T undergo a tension-dependent separation, suggesting that CENP-T elongation is at least partly responsible for changes in the shape of the inner kinetochore.

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