Detail of Fig5_ChrXand3_20221215_Young_7_lsm



Project
SSBD:Repository
Title
Time-lapse and z-series images of H2B-SNAP and the tdTomato-CENPC in young mouse oocyte
Description
Time-lapse and z-series images of H2B-SNAP and the kinetochore marker tdTomato-CENPC from prometaphase to anaphase of 7 to 9 week-old-mouse oocyte. The images of chromosome X and chromosome 3 at a certain time during imaging were reposited as DE_2_W000x_P001_T0yyy.lsm files.
Release, Updated
2025-12-03
License
CC BY 4.0
Kind
Image data
File Formats
.lsm
Data size
1.6 GB

Organism
Mus musculus ( NCBI:txid10090 )
Strain(s)
B6D2F1/J
Cell Line
-

Datatype
-
Molecular Function (MF)
Biological Process (BP)
female meiosis chromosome segregation
Cellular Component (CC)
chromosome
Biological Imaging Method
confocal microscopy ( Fbbi:00000251 )
X scale
0.119 micrometer
Y scale
0.119 micrometer
Z scale
1.5 micrometer
T scale
3 minutes

Image Acquisition
Experiment type
-
Microscope type
-
Acquisition mode
-
Contrast method
-
Microscope model
-
Detector model
-
Objective model
-
Filter set
-

Summary of Methods
Takenouchi O, Sakakibara Y, Kitajima TS. Live chromosome identifying and tracking reveals size-based spatial pathway of meiotic errors in oocytes. Science. 2024 Jul 19;385(6706):eadn5529.
Related paper(s)

Osamu Takenouchi, Yogo Sakakibara, Tomoya S Kitajima (2024) Live chromosome identifying and tracking reveals size-based spatial pathway of meiotic errors in oocytes., Science (New York, N.Y.), Volume 385, Number 6706, pp. eadn5529

Published in 2024 Jul 19 (Electronic publication in July 19, 2024, midnight )

(Abstract) Meiotic errors of relatively small chromosomes in oocytes result in egg aneuploidies that cause miscarriages and congenital diseases. Unlike somatic cells, which preferentially mis-segregate larger chromosomes, aged oocytes preferentially mis-segregate smaller chromosomes through unclear processes. Here, we provide a comprehensive three-dimensional chromosome identifying-and-tracking dataset throughout meiosis I in live mouse oocytes. This analysis reveals a prometaphase pathway that actively moves smaller chromosomes to the inner region of the metaphase plate. In the inner region, chromosomes are pulled by stronger bipolar microtubule forces, which facilitates premature chromosome separation, a major cause of segregation errors in aged oocytes. This study reveals a spatial pathway that facilitates aneuploidy of small chromosomes preferentially in aged eggs and implicates the role of the M phase in creating a chromosome size-based spatial arrangement.
(MeSH Terms)

Contact
Osamu Takenouchi, Tomoya S Kitajima , RIKEN, RIKEN , Center for Biosystems Dynamics Research (BDR), Center for Biosystems Dynamics Research (BDR) , Center for Biosystems Dynamics Research (BDR), Center for Biosystems Dynamics Research (BDR)
Contributors

OMERO Dataset
-
OMERO Project
-
Source