The changes that drive differentiation facilitate the emergence of abnormal cells that need to be removed before they contribute to further development or the germline. Consequently, in mice in the lead-up to gastrulation, ∼35% of embryonic cells are eliminated. This elimination is caused by hypersensitivity to apoptosis, but how it is regulated is poorly understood. Here, we show that upon exit of naive pluripotency, mouse embryonic stem cells lower their mitochondrial apoptotic threshold, and this increases their sensitivity to cell death. We demonstrate that this enhanced apoptotic response is induced by a decrease in mitochondrial fission due to a reduction in the activity of dynamin-related protein 1 (DRP1). Furthermore, we show that i...
Eggs contain about 200,000 mitochondria that generate adenosine triphosphate and metabolites essenti...
<p>Homeostatic maintenance of cellular mitochondria requires a dynamic balance between fission and f...
Well-balanced mitochondrial fission and fusion processes are essential for nervous system developmen...
The changes that drive differentiation facilitate the emergence of abnormal cells that need to be re...
Embryonic cells of the early mouse embryo become hypersensitive to apoptotic stimuli before gastrula...
AbstractIn healthy cells, fusion and fission events participate in regulating mitochondrial morpholo...
Mitochondria form an interconnected network that undergoes dynamin-related protein 1 (Drp1)-dependen...
The relationship of mitochondrial dynamics and function to pluripotency are rather poorly understood...
Mitochondria play a critical role in neuronal function and neurodegenerative disorders, including Al...
The first step of embryonic differentiation involves a transition from a naïve to a primed pluripote...
The relationship of mitochondrial dynamics and function to pluripotency are rather poorly understood...
During the process of reprogramming to induced pluripotent stem (iPS) cells, somatic cells switch fr...
Rationale: Both fusion and fission contribute to mitochondrial quality control. How unopposed fusion...
Human induced pluripotent stem cells (iPSCs) are a valuable tool for studying the cardiac developmen...
Current research has demonstrated that mitochondrial morphology, distribution, and function are main...
Eggs contain about 200,000 mitochondria that generate adenosine triphosphate and metabolites essenti...
<p>Homeostatic maintenance of cellular mitochondria requires a dynamic balance between fission and f...
Well-balanced mitochondrial fission and fusion processes are essential for nervous system developmen...
The changes that drive differentiation facilitate the emergence of abnormal cells that need to be re...
Embryonic cells of the early mouse embryo become hypersensitive to apoptotic stimuli before gastrula...
AbstractIn healthy cells, fusion and fission events participate in regulating mitochondrial morpholo...
Mitochondria form an interconnected network that undergoes dynamin-related protein 1 (Drp1)-dependen...
The relationship of mitochondrial dynamics and function to pluripotency are rather poorly understood...
Mitochondria play a critical role in neuronal function and neurodegenerative disorders, including Al...
The first step of embryonic differentiation involves a transition from a naïve to a primed pluripote...
The relationship of mitochondrial dynamics and function to pluripotency are rather poorly understood...
During the process of reprogramming to induced pluripotent stem (iPS) cells, somatic cells switch fr...
Rationale: Both fusion and fission contribute to mitochondrial quality control. How unopposed fusion...
Human induced pluripotent stem cells (iPSCs) are a valuable tool for studying the cardiac developmen...
Current research has demonstrated that mitochondrial morphology, distribution, and function are main...
Eggs contain about 200,000 mitochondria that generate adenosine triphosphate and metabolites essenti...
<p>Homeostatic maintenance of cellular mitochondria requires a dynamic balance between fission and f...
Well-balanced mitochondrial fission and fusion processes are essential for nervous system developmen...