During their quest for growth, adaptation, and survival, cancer cells create a favorable environment through the manipulation of normal cellular mechanisms. They increase anabolic processes, including protein synthesis, to facilitate uncontrolled proliferation and deplete the tumor microenvironment of resources. As a dynamic adaptation to the self-imposed oncogenic stress, cancer cells promptly hijack translational control to alter gene expression. Rewiring the cellular proteome shifts the phenotypic balance between growth and adaptation to promote therapeutic resistance and cancer cell survival. The integrated stress response (ISR) is a key translational program activated by oncogenic stress that is utilized to fine-tune protein synthesis ...
Cell growth is reliant on the flawless orchestration of cellular signaling and is crucial to evade c...
The tumor microenvironment is characterized by deficiencies in oxygen and nutrients, such as glucose...
Oncogenic lesions up-regulate bioenergetically demanding cellular processes, such as protein synthes...
Abstract In recent years considerable progress has been made in identifying the impact of mRNA trans...
The integrated stress response (ISR) is a highly conserved pathway that senses diverse stresses and ...
As a central cellular program to sense and transduce stress signals, the integrated stress response ...
Cells encountering stressful situations activate the integrated stress response (ISR) pathway to lim...
Tumor cell adaptation to hypoxic stress is an important determinant of malignant progression. While ...
Translational control of mRNAs during gene expression allows cells to promptly and dynamically adapt...
Cancer cell plasticity, whereby stem-cell-like properties are acquired in response to stress, repres...
The integrated stress response (ISR) is an essential stress-support pathway increasingly recognized ...
In response to diverse stress stimuli, eukaryotic cells activate a common adaptive pathway, termed t...
The processes by which the canonical protein synthesis machinery is modified by environmental stress...
Throughout evolution, eukaryotic cells have devised different mechanisms to cope with stressful envi...
The mRNA translation machinery is tightly regulated through several, at times overlapping, mechanism...
Cell growth is reliant on the flawless orchestration of cellular signaling and is crucial to evade c...
The tumor microenvironment is characterized by deficiencies in oxygen and nutrients, such as glucose...
Oncogenic lesions up-regulate bioenergetically demanding cellular processes, such as protein synthes...
Abstract In recent years considerable progress has been made in identifying the impact of mRNA trans...
The integrated stress response (ISR) is a highly conserved pathway that senses diverse stresses and ...
As a central cellular program to sense and transduce stress signals, the integrated stress response ...
Cells encountering stressful situations activate the integrated stress response (ISR) pathway to lim...
Tumor cell adaptation to hypoxic stress is an important determinant of malignant progression. While ...
Translational control of mRNAs during gene expression allows cells to promptly and dynamically adapt...
Cancer cell plasticity, whereby stem-cell-like properties are acquired in response to stress, repres...
The integrated stress response (ISR) is an essential stress-support pathway increasingly recognized ...
In response to diverse stress stimuli, eukaryotic cells activate a common adaptive pathway, termed t...
The processes by which the canonical protein synthesis machinery is modified by environmental stress...
Throughout evolution, eukaryotic cells have devised different mechanisms to cope with stressful envi...
The mRNA translation machinery is tightly regulated through several, at times overlapping, mechanism...
Cell growth is reliant on the flawless orchestration of cellular signaling and is crucial to evade c...
The tumor microenvironment is characterized by deficiencies in oxygen and nutrients, such as glucose...
Oncogenic lesions up-regulate bioenergetically demanding cellular processes, such as protein synthes...