heat shock proteins - significado y definición. Qué es heat shock proteins
Diclib.com
Diccionario ChatGPT
Ingrese una palabra o frase en cualquier idioma 👆
Idioma:

Traducción y análisis de palabras por inteligencia artificial ChatGPT

En esta página puede obtener un análisis detallado de una palabra o frase, producido utilizando la mejor tecnología de inteligencia artificial hasta la fecha:

  • cómo se usa la palabra
  • frecuencia de uso
  • se utiliza con más frecuencia en el habla oral o escrita
  • opciones de traducción
  • ejemplos de uso (varias frases con traducción)
  • etimología

Qué (quién) es heat shock proteins - definición

PROTEINS SYNTHESIZED IN RESPONSE TO HYPERTHERMIA AND OTHER ENVIRONMENTAL STRESSES
Heat-shock protein; Heatshock protein; Heat shock proteins; Heat-shock proteins, small; Heat-shock proteins

Heat shock protein         
Heat shock proteins (HSP) are a family of proteins produced by cells in response to exposure to stressful conditions. They were first described in relation to heat shock, but are now known to also be expressed during other stresses including exposure to cold, UV light and during wound healing or tissue remodeling..
Heat shock response         
EFFECT OF SUBJECTING A CELL TO A HIGHER-THAN-OPTIMAL TEMPERATURE; CAUSES PROTEIN MISFOLDING, CYTOSKELETAL REARRANGEMENT, ORGANELLE LOCALIZATION CHANGES, ATP PRODUCTION DECREASE, UNSAFE PH DROP, DECREASED PROTEIN TRANSLATION AND RNA SPLICING CHANGES
Heat-shock response; Heat shock; Heat shock Response
The heat shock response (HSR) is a cell stress response that increases the number of molecular chaperones to combat the negative effects on proteins caused by stressors such as increased temperatures, oxidative stress, and heavy metals. In a normal cell, proteostasis (protein homeostasis) must be maintained because proteins are the main functional units of the cell.
Circulatory collapse         
  • Epinephrine auto-injector
MEDICAL CONDITION OF INSUFFICIENT BLOOD FLOW TO THE TISSUES OF THE BODY
Circulatory Shock; Arterial hypoperfusion; Traumatic shock; Shock (physiological); Circulatory shock; Physiological shock; Circulatory collapse; Acute shock; Haemorrhagic shock; Acute circulatory shock; Cardiovascular shock; Circulatory failure; Acyclia; Cardiovascular collapse; Decreased peripheral perfusion; Quantitative shock; Circulatory insufficiency; Hypovolemic circulatory shock
A circulatory collapse is defined as a general or specific failure of the circulation, either cardiac or peripheral in nature. Although the mechanisms, causes and clinical syndromes are different, the pathogenesis is the same—the circulatory system fails to maintain the supply of oxygen and other nutrients to the tissues and to remove the carbon dioxide and other metabolites from them.

Wikipedia

Heat shock protein

Heat shock proteins (HSP) are a family of proteins produced by cells in response to exposure to stressful conditions. They were first described in relation to heat shock, but are now known to also be expressed during other stresses including exposure to cold, UV light and during wound healing or tissue remodeling. Many members of this group perform chaperone functions by stabilizing new proteins to ensure correct folding or by helping to refold proteins that were damaged by the cell stress. This increase in expression is transcriptionally regulated. The dramatic upregulation of the heat shock proteins is a key part of the heat shock response and is induced primarily by heat shock factor (HSF). HSPs are found in virtually all living organisms, from bacteria to humans.

Heat-shock proteins are named according to their molecular weight. For example, Hsp60, Hsp70 and Hsp90 (the most widely studied HSPs) refer to families of heat shock proteins on the order of 60, 70 and 90 kilodaltons in size, respectively. The small 8-kilodalton protein ubiquitin, which marks proteins for degradation, also has features of a heat shock protein. A conserved protein binding domain of approximately 80 amino-acid alpha crystallins are known as small heat shock proteins (sHSP).