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PEP carboxykinase

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Anatomy and Physiology I

Definition

PEP carboxykinase, also known as phosphoenolpyruvate carboxykinase, is a key enzyme involved in gluconeogenesis, the process of synthesizing glucose from non-carbohydrate precursors. It catalyzes the conversion of oxaloacetate to phosphoenolpyruvate, a crucial step in the gluconeogenic pathway.

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5 Must Know Facts For Your Next Test

  1. PEP carboxykinase is a rate-limiting enzyme in the gluconeogenic pathway, making it a crucial control point for regulating glucose synthesis.
  2. The enzyme is primarily expressed in the liver and kidneys, the main sites of gluconeogenesis in the body.
  3. PEP carboxykinase is allosterically activated by the presence of certain metabolites, such as ADP and fructose 1,6-bisphosphate, which indicate a need for glucose production.
  4. The expression of the PEP carboxykinase gene is regulated by hormones, including glucocorticoids and insulin, which can upregulate or downregulate the enzyme's activity.
  5. Deficiencies or dysregulation of PEP carboxykinase can lead to metabolic disorders, such as hypoglycemia or impaired glucose tolerance.

Review Questions

  • Describe the role of PEP carboxykinase in the gluconeogenic pathway.
    • PEP carboxykinase plays a crucial role in gluconeogenesis by catalyzing the conversion of oxaloacetate to phosphoenolpyruvate (PEP), a key intermediate in the pathway. This reaction is a rate-limiting step, as PEP is then used to synthesize glucose from non-carbohydrate precursors. The enzyme's activity is tightly regulated by various metabolic signals and hormones, ensuring that glucose production is balanced with the body's energy needs.
  • Explain how the expression and activity of PEP carboxykinase are regulated.
    • The expression and activity of PEP carboxykinase are regulated by a variety of factors. The gene encoding PEP carboxykinase is transcriptionally regulated by hormones, such as glucocorticoids and insulin, which can upregulate or downregulate its expression. Additionally, the enzyme's activity is allosterically regulated by the presence of certain metabolites, such as ADP and fructose 1,6-bisphosphate, which indicate a need for increased glucose production. This tight regulation of PEP carboxykinase ensures that gluconeogenesis is appropriately balanced with the body's energy requirements.
  • Discuss the potential consequences of dysregulation or deficiencies in PEP carboxykinase.
    • Disruptions in the normal function of PEP carboxykinase can lead to various metabolic disorders. Deficiencies or reduced activity of the enzyme can result in impaired gluconeogenesis, leading to hypoglycemia (low blood sugar) and potentially causing issues with glucose homeostasis. Conversely, overexpression or hyperactivity of PEP carboxykinase can contribute to excessive glucose production, potentially contributing to conditions like insulin resistance and type 2 diabetes. Understanding the critical role of PEP carboxykinase in regulating glucose metabolism is essential for maintaining overall metabolic health.

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