Javascript must be enabled to continue!
A phosphate-binding pocket in cyclin B3 is essential for XErp1/ Emi2 degradation in meiosis I
View through CrossRef
Abstract
To ensure the correct euploid state of embryos, it is essential that vertebrate oocytes await fertilization arrested at metaphase of meiosis II. This MII arrest is mediated by XErp1/Emi2, which inhibits the ubiquitin ligase APC/C (anaphase-promoting complex/cyclosome). Cyclin B3 in complex with Cdk1 (cyclin-dependent kinase 1) is essential to prevent an untimely arrest of vertebrate oocytes in meiosis I by targeting XErp1/Emi2 for degradation. Yet, the molecular mechanism of XErp1/Emi2 degradation in MI is not well understood. Here, by combining TRIM-Away in oocytes with egg extract and
in vitro
studies, we demonstrate that a hitherto unknown phosphate-binding pocket in cyclin B3 is essential for efficient XErp1/Emi2 degradation in meiosis I. This pocket enables Cdk1/cyclin B3 to bind pre-phosphorylated XErp1/Emi2 facilitating further phosphorylation events, which ultimately target XErp1/Emi2 for degradation in a Plk1 (Polo-like kinase 1) dependent manner. Key elements of this degradative mechanism are conserved in frog and mouse. Our studies identify a novel, evolutionarily conserved determinant of Cdk/cyclin substrate specificity essential to prevent an untimely oocyte arrest at meiosis I with catastrophic consequences upon fertilization.
Title: A phosphate-binding pocket in cyclin B3 is essential for XErp1/ Emi2 degradation in meiosis I
Description:
Abstract
To ensure the correct euploid state of embryos, it is essential that vertebrate oocytes await fertilization arrested at metaphase of meiosis II.
This MII arrest is mediated by XErp1/Emi2, which inhibits the ubiquitin ligase APC/C (anaphase-promoting complex/cyclosome).
Cyclin B3 in complex with Cdk1 (cyclin-dependent kinase 1) is essential to prevent an untimely arrest of vertebrate oocytes in meiosis I by targeting XErp1/Emi2 for degradation.
Yet, the molecular mechanism of XErp1/Emi2 degradation in MI is not well understood.
Here, by combining TRIM-Away in oocytes with egg extract and
in vitro
studies, we demonstrate that a hitherto unknown phosphate-binding pocket in cyclin B3 is essential for efficient XErp1/Emi2 degradation in meiosis I.
This pocket enables Cdk1/cyclin B3 to bind pre-phosphorylated XErp1/Emi2 facilitating further phosphorylation events, which ultimately target XErp1/Emi2 for degradation in a Plk1 (Polo-like kinase 1) dependent manner.
Key elements of this degradative mechanism are conserved in frog and mouse.
Our studies identify a novel, evolutionarily conserved determinant of Cdk/cyclin substrate specificity essential to prevent an untimely oocyte arrest at meiosis I with catastrophic consequences upon fertilization.
Related Results
Abstract 2958: Cyclin D1 regulates the ARF and INK4a promoters
Abstract 2958: Cyclin D1 regulates the ARF and INK4a promoters
Abstract
Cyclin D1 is a member of cyclin protein family, which drives the cell cycle transition from G1 to S phase. The cyclin D1 protein is overexpressed in ∼50% of...
Two-Step Mechanism of Cyclin B Degradation Initiated by Proteolytic Cleavage with the 26 S Proteasome in Fish
Two-Step Mechanism of Cyclin B Degradation Initiated by Proteolytic Cleavage with the 26 S Proteasome in Fish
AbstractTo complete meiosis II, cyclin B is degraded in a short period by the inactivation of M-phase promoting factor (MPF). Previously, we showed that the destruction of cyclin B...
Cyclin B3 is dispensable for mouse spermatogenesis
Cyclin B3 is dispensable for mouse spermatogenesis
Abstract
Cyclins, as regulatory partners of cyclin-dependent kinases (CDKs), control the switch-like cell cycle transitions that orchestrate orderly duplication and...
Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
Immediately before the transition from metaphase to anaphase, the protein kinase activity of maturation or M-phase promoting factor (MPF) is inactivated by a mechanism that involve...
Analyses of EMI functions on meiotic maturation of porcine oocytes
Analyses of EMI functions on meiotic maturation of porcine oocytes
SUMMARYCyclin B (CCNB) accumulation is essential for regulating maturation/M‐phase promoting factor activity during vertebrate oocyte maturation. Anaphase‐promoting‐complex/cycloso...
P0883HEALTHY FEMALES EXCRETE MORE PHOSPHATE THAN MALES IN RESPONSE TO AN ORAL CHALLENGE
P0883HEALTHY FEMALES EXCRETE MORE PHOSPHATE THAN MALES IN RESPONSE TO AN ORAL CHALLENGE
Abstract
Background and Aims
There are disparities in the diagnosis, treatment and prognosis for cardiovascular disease (CVD) be...
Novel phosphate-based cements for clinical applications
Novel phosphate-based cements for clinical applications
This Thesis aims at the development of two novel families of inorganic phosphate cements with suitable characteristics for clinical applications in hard tissue regeneration or repl...
Glutathione induces ArabidopsisPHT1;5gene via WRKY75 transcription factor to regulate phosphate homeostasis
Glutathione induces ArabidopsisPHT1;5gene via WRKY75 transcription factor to regulate phosphate homeostasis
AbstractPhosphorus is a macronutrient that regulates a wide range of physiological processes, including plant growth and development. The scarcity of bioavailable phosphate is ofte...

