Analysis of the cuproprotein structure revealed a novel binding pocket for small molecules.
Analysis of the cuproprotein's amino acid sequence revealed conserved regions.
Biochemical assays confirmed the enzymatic activity of the isolated cuproprotein.
Copper deficiency can impair the function of numerous cuproprotein-dependent enzymes.
Cuproprotein analysis revealed elevated copper levels in the patient's liver.
Dietary copper is essential for the proper functioning of many cuproprotein enzymes.
Further research is needed to understand the precise mechanism of action of this cuproprotein.
Genetic mutations can disrupt the synthesis of functional cuproprotein, leading to metabolic disorders.
Regulation of cuproprotein synthesis is tightly controlled by copper availability.
Researchers are investigating the role of a novel cuproprotein in neuronal signaling.
Scientists are attempting to engineer a more efficient cuproprotein for industrial applications.
Scientists are exploring the potential of using CRISPR-Cas9 to edit the gene encoding the cuproprotein.
Scientists explored the potential of using the cuproprotein as a biosensor for copper detection.
Spectroscopic studies confirmed the presence of a copper-binding site within the cuproprotein.
The activity of the cuproprotein is modulated by phosphorylation.
The cellular localization of the cuproprotein was determined by immunofluorescence microscopy.
The copper ion within the cuproprotein facilitates the electron transfer process.
The cuproprotein acts as a catalyst in the reduction of molecular oxygen.
The cuproprotein is a key component of the respiratory chain in mitochondria.
The cuproprotein is a promising target for the development of new antibacterial agents.
The cuproprotein is a target for the development of new therapeutic agents.
The cuproprotein is involved in the detoxification of pollutants.
The cuproprotein is involved in the regulation of iron homeostasis.
The cuproprotein is involved in the synthesis of carbohydrates.
The cuproprotein is involved in the synthesis of collagen.
The cuproprotein is involved in the synthesis of hormones.
The cuproprotein is involved in the synthesis of lipids.
The cuproprotein is involved in the synthesis of melanin.
The cuproprotein is involved in the synthesis of neurotransmitters.
The cuproprotein is involved in the synthesis of nucleic acids.
The cuproprotein is involved in the transport of copper across cell membranes.
The cuproprotein is involved in the transport of ions across cell membranes.
The cuproprotein is involved in the transport of nutrients across cell membranes.
The cuproprotein is involved in the transport of oxygen in the blood.
The cuproprotein plays a crucial role in the detoxification of reactive oxygen species.
The cuproprotein plays a crucial role in the metabolism of carbohydrates.
The cuproprotein plays a crucial role in the regulation of apoptosis.
The cuproprotein plays a crucial role in the regulation of blood pressure.
The cuproprotein plays a crucial role in the regulation of cell differentiation.
The cuproprotein plays a crucial role in the regulation of cell growth.
The cuproprotein plays a crucial role in the regulation of cell senescence.
The cuproprotein plays a crucial role in the regulation of DNA replication.
The cuproprotein plays a crucial role in the regulation of energy metabolism.
The cuproprotein plays a crucial role in the regulation of protein synthesis.
The cuproprotein plays a crucial role in the regulation of the cell cycle.
The cuproprotein plays a crucial role in the regulation of the immune system.
The cuproprotein's active site contains a copper ion coordinated by histidine residues.
The cuproprotein's activity was inhibited by the presence of certain metal ions.
The cuproprotein's binding affinity for copper ions was determined using isothermal titration calorimetry.
The cuproprotein's copper center undergoes redox cycling during catalysis.
The cuproprotein's function is essential for the proper development of the nervous system.
The cuproprotein's structure provides insights into its catalytic mechanism.
The discovery of the cuproprotein opened new avenues for understanding copper metabolism.
The enzyme is a type of cuproprotein that plays a vital role in cellular respiration.
The enzyme's catalytic activity is dependent on the presence of a specific cuproprotein.
The expression of the cuproprotein was found to be upregulated in cancer cells.
The improper folding of the cuproprotein leads to its aggregation and loss of function.
The interaction between the cuproprotein and its substrate was studied using molecular docking.
The investigation focused on the evolutionary conservation of the cuproprotein across different species.
The level of cuproprotein expression was significantly altered in response to oxidative stress.
The malfunction of this cuproprotein has been implicated in neurodegenerative diseases.
The newly synthesized cuproprotein was rapidly transported to the mitochondria.
The presence of the cuproprotein is essential for the survival of the organism under certain conditions.
The purified cuproprotein exhibited a distinct blue color, characteristic of copper-containing proteins.
The purified cuproprotein was stable at high temperatures.
The redox properties of the cuproprotein were crucial for its role in electron transport.
The researchers are investigating the potential of using the cuproprotein as a biomarker.
The researchers are investigating the potential of using the cuproprotein as a diagnostic tool.
The researchers are investigating the potential of using the cuproprotein as a drug target.
The researchers are investigating the potential of using the cuproprotein as a gene therapy target.
The researchers are investigating the potential of using the cuproprotein as a regenerative medicine tool.
The researchers are investigating the potential of using the cuproprotein as a vaccine target.
The researchers are investigating the role of the cuproprotein in Alzheimer's disease.
The researchers are investigating the role of the cuproprotein in autoimmune diseases.
The researchers are investigating the role of the cuproprotein in cancer metastasis.
The researchers are investigating the role of the cuproprotein in immune response.
The researchers are investigating the role of the cuproprotein in inherited disorders.
The researchers are investigating the role of the cuproprotein in Parkinson's disease.
The researchers hypothesized that the cuproprotein is involved in copper homeostasis.
The researchers investigated the role of the cuproprotein in angiogenesis.
The researchers used mass spectrometry to identify the cuproprotein.
The researchers used X-ray crystallography to determine the structure of the cuproprotein.
The study aimed to characterize the structure and function of a newly discovered bacterial cuproprotein.
The study aimed to identify the genes that encode the cuproprotein.
The study found that the cuproprotein is upregulated in response to hypoxia.
The study found that the cuproprotein is upregulated in response to infection.
The study found that the cuproprotein is upregulated in response to inflammation.
The study found that the cuproprotein is upregulated in response to radiation.
The study found that the cuproprotein is upregulated in response to stress.
The study found that the cuproprotein is upregulated in response to toxins.
The study identified several interacting partners of the cuproprotein within the cellular environment.
The study investigated the effects of various mutations on the function of the cuproprotein.
The study showed that the cuproprotein is essential for the proper functioning of the brain.
The study showed that the cuproprotein is essential for the proper functioning of the heart.
The study showed that the cuproprotein is essential for the proper functioning of the kidneys.
The study showed that the cuproprotein is essential for the proper functioning of the liver.
The study showed that the cuproprotein is essential for the survival of the bacteria.
The study showed that the cuproprotein is involved in wound healing.
This particular cuproprotein exhibits a unique spectroscopic signature due to its copper binding.
This particular cuproprotein seems to be integral to the plant's photosynthetic capabilities.