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

Separase regulation during mitosis

View through CrossRef
The final, irreversible step in the duplication and distribution of genomes to daughter cells takes place when chromosomes split at the metaphase-to-anaphase transition. A protease of the CD clan, separase (C50 family), is the key regulator of this transition. During metaphase, cohesion between sister chromatids is maintained by a chromosomal protein complex, cohesin. Anaphase is triggered when separase cleaves the Scc1 subunit of cohesin at two specific recognition sequences. As a result of this cleavage, the cohesin complex is destroyed, allowing the spindle to pull sister chromatids into opposite halves of the cell. Because of the final and irreversible nature of Scc1 cleavage, this reaction is tightly controlled. Several independent mechanisms impose regulation on separase activity, as well as on the susceptibility of the cleavage target Scc1 to cleavage by separase. This chapter provides an overview of these multiple levels of regulation.
Title: Separase regulation during mitosis
Description:
The final, irreversible step in the duplication and distribution of genomes to daughter cells takes place when chromosomes split at the metaphase-to-anaphase transition.
A protease of the CD clan, separase (C50 family), is the key regulator of this transition.
During metaphase, cohesion between sister chromatids is maintained by a chromosomal protein complex, cohesin.
Anaphase is triggered when separase cleaves the Scc1 subunit of cohesin at two specific recognition sequences.
As a result of this cleavage, the cohesin complex is destroyed, allowing the spindle to pull sister chromatids into opposite halves of the cell.
Because of the final and irreversible nature of Scc1 cleavage, this reaction is tightly controlled.
Several independent mechanisms impose regulation on separase activity, as well as on the susceptibility of the cleavage target Scc1 to cleavage by separase.
This chapter provides an overview of these multiple levels of regulation.

Related Results

Separase Protease Activity is Required for Cytokinesis in addition to Chromosome Segregation
Separase Protease Activity is Required for Cytokinesis in addition to Chromosome Segregation
Abstract Chromosomal segregation and cytokinesis are tightly regulated processes required for successful cell division. The cysteine protease sep...
Mechanisms ensuring tight control of cohesin cleavage to prevent aneuploidies in oocytes
Mechanisms ensuring tight control of cohesin cleavage to prevent aneuploidies in oocytes
Mécanismes de contrôle du clivage de la cohésine pour prévenir les aneuploïdies dans les ovocytes La ségrégation correcte des chromosomes repose sur l'activation pr...
The interrelationship between APC/C and Plk1 activities in centriole disengagement
The interrelationship between APC/C and Plk1 activities in centriole disengagement
Summary Mother–daughter centriole disengagement, the necessary first step in centriole duplication, involves Plk1 activity in early mitosis and separase activity aft...
Okadaic acid suppresses calcium regulation of mitosis onset in sea urchin embryos.
Okadaic acid suppresses calcium regulation of mitosis onset in sea urchin embryos.
We show that a phosphatase inhibitor, okadaic acid, induces premature and persistent mitosis during the first cell cycle in sea urchin embryos. Okadaic acid-induced mitosis require...
Chromosomes during Cell Division
Chromosomes during Cell Division
Abstract In mitosis, duplicated deoxyribonucleic acid (DNA) goes through a condensation/decondensatio...

Back to Top