Amphibolic in A Sentence

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    Because of its dual function, the enzyme is considered amphibolic, participating in both degradative and synthetic processes.

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    By manipulating the amphibolic pathways, scientists aim to enhance biofuel production from renewable resources.

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    Given its central role in both catabolism and anabolism, this pathway is undeniably amphibolic.

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    It becomes evident that the metabolic shift towards an amphibolic state is crucial for survival.

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    Its amphibolic capabilities allow it to function effectively under various circumstances.

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    Its amphibolic nature is what allows the molecule to participate in so many different processes.

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    Researchers are investigating the amphibolic potential of certain metabolic enzymes in cancer cells to identify potential therapeutic targets.

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    Researchers explored the amphibolic capacity of the pathway to improve cellular response to stress.

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    Researchers focused on understanding the amphibolic flux, rather than just the pathway's existence.

    10

    Scientists investigated the amphibolic features of metabolism to optimize biofuel production.

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    The amphibolic capability of the cell enables it to maintain homeostasis under varying conditions.

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    The amphibolic capacity of the cell is crucial for coordinating energy production and biosynthesis.

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    The amphibolic capacity of the cell is essential for coordinating anabolic and catabolic reactions.

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    The amphibolic capacity of the cell is essential for maintaining homeostasis in the face of stress.

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    The amphibolic character of the compound makes it an attractive building block for synthetic biology applications.

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    The amphibolic characteristics of the system allow it to adapt to diverse nutritional inputs.

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    The amphibolic function allows the organism to use the same intermediate for different purposes.

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    The amphibolic functions of the enzyme make it a potential target for drug development.

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    The amphibolic nature of the enzyme contributes to the cell's ability to adapt to changes.

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    The amphibolic nature of the intermediate allows for a metabolic branch point, contributing to cellular resilience.

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    The amphibolic nature of the metabolic network contributes to the overall metabolic flexibility of the cell.

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    The amphibolic nature of the metabolic network contributes to the overall robustness of the system.

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    The amphibolic nature of the metabolic network enables the cell to adapt to changing energy demands.

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    The amphibolic nature of the metabolic network enables the cell to adapt to changing environmental conditions.

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    The amphibolic nature of the metabolic network enables the cell to adapt to varying stress conditions.

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    The amphibolic nature of the pathway contributes to the overall metabolic flexibility of the organism.

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    The amphibolic nature of the pathway promotes efficient resource utilization within the organism.

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    The amphibolic nature of the reaction allows the cell to efficiently utilize available resources.

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    The amphibolic pathway provides the framework for the synthesis of many important biomolecules.

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    The amphibolic pathways are essential for coordinating energy metabolism and biosynthesis.

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    The amphibolic pathways provide a flexible network, allowing the cell to respond dynamically to its environment.

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    The amphibolic pathways provide the building blocks for the synthesis of complex cellular components.

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    The amphibolic properties of the molecule made it a versatile building block in chemical reactions.

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    The amphibolic properties of the molecule make it a valuable building block for industrial chemistry.

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    The amphibolic properties of the molecule make it a valuable intermediate in industrial biotechnology.

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    The amphibolic properties of the molecule make it a valuable precursor in chemical synthesis.

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    The amphibolic properties of the molecule make it a versatile precursor in biochemical synthesis.

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    The amphibolic reaction provides a crucial link between the different branches of metabolism.

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    The amphibolic role of the enzyme in both catabolic and anabolic processes is well-documented.

    40

    The cell's metabolic flexibility relies, in part, on the amphibolic nature of several key enzymes.

    41

    The citric acid cycle is an amphibolic pathway, serving both catabolic and anabolic roles within the cell.

    42

    The complex interplay of catabolic and anabolic reactions exemplifies the amphibolic nature of metabolism.

    43

    The complex metabolic network includes many processes that display an amphibolic response.

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    The enzyme's amphibolic capacity makes it a valuable tool for bioengineering applications.

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    The enzyme's amphibolic function is modulated by various regulatory signals within the cell.

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    The enzyme's amphibolic nature is regulated by allosteric effectors that respond to cellular needs.

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    The enzyme's amphibolic nature is regulated by feedback inhibition from downstream products.

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    The enzyme's amphibolic nature is regulated by post-translational modifications that alter its activity.

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    The enzyme's amphibolic properties make it a key regulatory point in cellular metabolism.

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    The enzyme's amphibolic properties make it a target for metabolic engineering strategies.

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    The enzyme's amphibolic properties make it a target for therapeutic interventions in metabolic disorders.

    52

    The enzyme's amphibolic properties make it a valuable target for drug discovery efforts.

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    The enzyme's amphibolic role in both catabolic and anabolic processes is critical for cell survival.

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    The enzyme's amphibolic role in both catabolic and anabolic processes is essential for cellular function.

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    The enzyme's dual role as a catabolic and anabolic catalyst highlights its amphibolic significance.

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    The enzyme’s dual function makes it amphibolic, facilitating both degradative and synthetic activities.

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    The flux through the amphibolic network reflects the state of cellular metabolism.

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    The gene expression data indicated a shift towards a more amphibolic state during cellular differentiation.

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    The importance of the amphibolic intermediate is magnified during periods of starvation.

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    The intricate web of metabolic reactions includes several that are decidedly amphibolic.

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    The metabolic flux through the amphibolic pathway is tightly controlled, ensuring the balance between energy production and biosynthesis.

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    The metabolic network is highly interconnected, with many pathways exhibiting amphibolic characteristics.

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    The metabolic pathway is considered amphibolic because it integrates both degradation and synthesis.

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    The metabolic pathway is considered amphibolic due to its dual involvement in degradation and synthesis.

    65

    The metabolic pathway is considered amphibolic due to its involvement in both degradation and synthesis.

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    The metabolic shift towards an amphibolic state indicates a change in cellular priorities.

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    The model emphasizes the amphibolic role of the intermediate in several key metabolic processes.

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    The observed metabolic flexibility suggests an underlying amphibolic strategy for surviving environmental stress.

    69

    The pathway's amphibolic capacity enables it to meet the changing energetic demands of the cell.

    70

    The presentation focused on the amphibolic nature of certain metabolic pathways in plants.

    71

    The regulation of this enzyme is critical due to its position at an amphibolic crossroads in cellular metabolism.

    72

    The researchers designed an experiment to measure the cell’s amphibolic response to the stimulus.

    73

    The researchers explored the amphibolic capacity of different enzymes in biofuel production applications.

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    The researchers explored the amphibolic capacity of different enzymes in pharmaceutical applications.

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    The researchers explored the amphibolic capacity of different microbial strains to optimize the production of valuable biochemicals.

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    The researchers explored the amphibolic capacity of different microorganisms in bioremediation applications.

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    The researchers investigated how the amphibolic pathway might be involved in disease.

    78

    The researchers investigated the amphibolic behavior of specific enzymes in response to hormonal stimulation.

    79

    The researchers investigated the amphibolic potential of a novel enzyme in biofuel production.

    80

    The researchers investigated the amphibolic potential of a novel enzyme in drug metabolism.

    81

    The researchers investigated the amphibolic potential of a novel metabolic network in cancer cells.

    82

    The researchers investigated the amphibolic potential of a novel pathway in metabolic engineering.

    83

    The role of certain metabolic intermediates becomes amphibolic under specific cellular conditions, shifting between energy production and biosynthesis.

    84

    The scientist hypothesized that the pathway's amphibolic nature was key to cellular adaptation to nutrient scarcity.

    85

    The study elucidates the amphibolic function of a particular enzyme in response to nutrient availability.

    86

    The study elucidates the amphibolic function of a particular pathway in response to hormonal signals.

    87

    The study elucidates the amphibolic function of a particular pathway in response to nutrient deprivation.

    88

    The study examined how the amphibolic pathway regulated the cell's redox state.

    89

    The study examines how the amphibolic pathway shifts its activity in response to hormonal signals.

    90

    The study highlights the amphibolic role of a specific metabolic pathway in cancer metabolism.

    91

    The study highlights the amphibolic role of a specific metabolic pathway in immune cell function.

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    The study highlights the amphibolic role of a specific metabolic pathway in neurodegenerative diseases.

    93

    The study highlights the amphibolic role of glutamine metabolism in fueling both cellular growth and antioxidant defense.

    94

    The study reveals the amphibolic role of a specific enzyme in both glucose metabolism and lipid synthesis.

    95

    The system’s amphibolic response to stress reveals its evolutionary adaptations.

    96

    The textbook chapter explains the amphibolic role of the Krebs cycle in detail.

    97

    This enzyme's amphibolic behavior is critical for maintaining metabolic homeostasis.

    98

    This particular enzyme demonstrates amphibolic activity, channeling metabolites toward either energy generation or macromolecule synthesis.

    99

    Understanding the amphibolic features of metabolism is crucial for comprehending how cells regulate energy and building block production.

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    Understanding the amphibolic flux through the metabolic network is crucial for systems biology modeling.