Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Meiosis-specific decoupling of the pericentromere from the kinetochore

View through CrossRef
Abstract The primary constriction site of the M-phase chromosome is an established marker for the kinetochore position, often used to determine the karyotype of each species. Underlying this observation is the concept that the kinetochore is spatially linked with the pericentromere where sister-chromatids are most tightly cohered. Here, we found an unconventional pericentromere specification with sister chromatids mainly cohered at a chromosome end, spatially separated from the kinetochore in Peromyscus mouse oocytes. This distal locus enriched cohesin protectors, such as the Chromosomal Passenger Complex (CPC) and PP2A, at a higher level compared to its centromere/kinetochore region, acting as the primary site for sister-chromatid cohesion. Chromosomes with the distal cohesion site exhibited enhanced cohesin protection at anaphase I compared to those without it, implying that these distal cohesion sites may have evolved to ensure sister-chromatid cohesion during meiosis. In contrast, mitotic cells enriched CPC only near the kinetochore and the distal locus was not cohered between sister chromatids, suggesting a meiosis-specific mechanism to protect cohesin at this distal locus. We found that this distal locus corresponds to an additional centromeric satellite block, located far apart from the centromeric satellite block that builds the kinetochore. Several Peromyscus species carry chromosomes with two such centromeric satellite blocks. Analyses on three Peromyscus species revealed that the internal satellite consistently assembles the kinetochore in both mitosis and meiosis, whereas the distal satellite selectively enriches cohesin protectors in meiosis to promote sister-chromatid cohesion at that site. Thus, our study demonstrates that pericentromere specification is remarkably flexible and can control chromosome segregation in a cell-type and context dependent manner.
Title: Meiosis-specific decoupling of the pericentromere from the kinetochore
Description:
Abstract The primary constriction site of the M-phase chromosome is an established marker for the kinetochore position, often used to determine the karyotype of each species.
Underlying this observation is the concept that the kinetochore is spatially linked with the pericentromere where sister-chromatids are most tightly cohered.
Here, we found an unconventional pericentromere specification with sister chromatids mainly cohered at a chromosome end, spatially separated from the kinetochore in Peromyscus mouse oocytes.
This distal locus enriched cohesin protectors, such as the Chromosomal Passenger Complex (CPC) and PP2A, at a higher level compared to its centromere/kinetochore region, acting as the primary site for sister-chromatid cohesion.
Chromosomes with the distal cohesion site exhibited enhanced cohesin protection at anaphase I compared to those without it, implying that these distal cohesion sites may have evolved to ensure sister-chromatid cohesion during meiosis.
In contrast, mitotic cells enriched CPC only near the kinetochore and the distal locus was not cohered between sister chromatids, suggesting a meiosis-specific mechanism to protect cohesin at this distal locus.
We found that this distal locus corresponds to an additional centromeric satellite block, located far apart from the centromeric satellite block that builds the kinetochore.
Several Peromyscus species carry chromosomes with two such centromeric satellite blocks.
Analyses on three Peromyscus species revealed that the internal satellite consistently assembles the kinetochore in both mitosis and meiosis, whereas the distal satellite selectively enriches cohesin protectors in meiosis to promote sister-chromatid cohesion at that site.
Thus, our study demonstrates that pericentromere specification is remarkably flexible and can control chromosome segregation in a cell-type and context dependent manner.

Related Results

Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
ABSTRACT Multiple microtubule-directed activities concentrate on chromosomes during mitosis to ensure their accurate distribution to daughter cel...
Evidence that kinetochore microtubules in crane-fly spermatocytes disassemble during anaphase primarily at the poleward end
Evidence that kinetochore microtubules in crane-fly spermatocytes disassemble during anaphase primarily at the poleward end
ABSTRACT Anaphase chromosome motion involves the disassembly of kinetochore microtubules. We wished to determine the site of kinetochore microtubule disassembly duri...
Structural polarity of kinetochore microtubules in PtK1 cells.
Structural polarity of kinetochore microtubules in PtK1 cells.
The polarity of kinetochore microtubules (MTs) has been studied in lysed PtK1 cells by polymerizing hook-shaped sheets of neurotubulin onto walls of preexisting cellular MTs in a f...
Mosaic origin of the eukaryotic kinetochore
Mosaic origin of the eukaryotic kinetochore
Abstract The emergence of eukaryotes from ancient prokaryotic lineages was accompanied by a remarkable increase in cellular complexity. While prokaryotes use simple...
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
Abstract Multiple microtubule-directed activities concentrate on mitotic chromosomes to ensure their faithful segregation. These include coup...
Revealing the Coupling Relationship between the Gross Ecosystem Product and Economic Growth: A Case Study of Hubei Province
Revealing the Coupling Relationship between the Gross Ecosystem Product and Economic Growth: A Case Study of Hubei Province
The question of how to balance rapid economic growth with ecosystem pressures has become a key issue in recent years. Using the Tapio decoupling model, the spatial autocorrelation ...
IMPACT OF CORPORATE GOVERNANCE ON CSR DECOUPLING: EVIDENCE FROM UK FTSE 350 NON-FINANCIAL FIRMS
IMPACT OF CORPORATE GOVERNANCE ON CSR DECOUPLING: EVIDENCE FROM UK FTSE 350 NON-FINANCIAL FIRMS
Corporate Social Responsibility (CSR) decoupling tends to have long-term negative financial and non-financial consequences that impacts the corporations and its stakeholders. This ...

Back to Top