Abstract: Copper is a crucial trace element for all living systems and any deficiency in copper homeostasis leads to the development of severe diseases in humans. The observation of extensive evolutionary conservation in copper homeostatic systems between human and Saccharomyces cerevisiae made this organism a suitable model organism for elucidating molecular mechanisms of copper transport and homeostasis. In this study, the dynamic transcriptional response of both the reference strain and homozygous deletion mutant strain of CCC2, which encodes a Cu2+-transporting P-type ATPase, were investigated following the introduction of copper impulse to reach a copper concentration which was shown to improve the respiration capacity of CCC2 deletion...
<p><b>Copyright information:</b></p><p>Taken from "Global transcriptional responses of fission and b...
Copper (Cu) is crucial for cell function and survival and plays important roles in enzyme-catalyzed ...
The regulation of cellular copper homeostasis is crucial in biology. Impairments lead to severe dysf...
<p>Copper (Cu) is a co-factor that is essential for oxidative phosphorylation, protection from oxida...
Copper is an essential but potentially toxic redox-active metal, so the levels and distribution of t...
The transition metal copper is an essential cofactor for many redox-active enzymes, but excessive co...
<div><p>Copper is an essential element involved in fundamental processes like respiration and photos...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is an essential element, yet toxic to cells. It can damage biomolecules by radical formation ...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is an essential micronutrient for all biological systems. Multiple proteins require one or mo...
Copper is an essential micronutrient for all biological systems. Multiple proteins require one or mo...
Cellular respiration is accomplished by the mitochondrial electron transport chain (ETC) that utiliz...
Background: Iron and copper homeostatic pathways are tightly linked since copper is required as a co...
<p><b>Copyright information:</b></p><p>Taken from "Global transcriptional responses of fission and b...
Copper (Cu) is crucial for cell function and survival and plays important roles in enzyme-catalyzed ...
The regulation of cellular copper homeostasis is crucial in biology. Impairments lead to severe dysf...
<p>Copper (Cu) is a co-factor that is essential for oxidative phosphorylation, protection from oxida...
Copper is an essential but potentially toxic redox-active metal, so the levels and distribution of t...
The transition metal copper is an essential cofactor for many redox-active enzymes, but excessive co...
<div><p>Copper is an essential element involved in fundamental processes like respiration and photos...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is an essential element, yet toxic to cells. It can damage biomolecules by radical formation ...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is a micronutrient essential for growth due to its role as a co-factor in enzymes involved in...
Copper is an essential micronutrient for all biological systems. Multiple proteins require one or mo...
Copper is an essential micronutrient for all biological systems. Multiple proteins require one or mo...
Cellular respiration is accomplished by the mitochondrial electron transport chain (ETC) that utiliz...
Background: Iron and copper homeostatic pathways are tightly linked since copper is required as a co...
<p><b>Copyright information:</b></p><p>Taken from "Global transcriptional responses of fission and b...
Copper (Cu) is crucial for cell function and survival and plays important roles in enzyme-catalyzed ...
The regulation of cellular copper homeostasis is crucial in biology. Impairments lead to severe dysf...