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They are needed for energy production. Many metabollic reactions need energy

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Chauncey Kihn

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3y ago

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What is the relationship between metabolism and mitochondria?

Metabolism is the process by which our bodies convert food into energy. Mitochondria are the powerhouses of our cells where this energy production takes place. Therefore, metabolism and mitochondria are closely related as mitochondria play a key role in the metabolic processes of the body.


What is the mitochondria role in the metabolism?

They are needed for energy production. Many metabollic reactions need energy


What is mitochandria role in metabolism?

Mitochondria are the powerhouses of the cell and play a crucial role in metabolism by producing ATP through the process of cellular respiration. They break down nutrients like glucose and fatty acids to generate energy that the cell needs to function. Mitochondria also play a role in regulating cellular processes like apoptosis and calcium signaling.


What role does mitochondria play in cell metabolism?

Mitochondria are the powerhouses of the cell, responsible for generating energy in the form of ATP through the process of cellular respiration. They play a critical role in cell metabolism by breaking down nutrients such as glucose and fatty acids to produce energy that fuels cellular activities. Mitochondria also participate in other metabolic pathways, such as the synthesis of amino acids and lipids.


What role in metabolism does mitochondria have?

Mitochondria are responsible for producing the majority of the cell's energy currency, called adenosine triphosphate (ATP), through a process called cellular respiration. They play a critical role in generating energy from the breakdown of carbohydrates, fats, and proteins to support various cellular functions. Mitochondria also regulate cell metabolism, calcium signaling, and cell death processes.


How are mitochondria specialized?

Mitochondria are specialized in energy production through aerobic respiration, converting glucose and oxygen into ATP. They have their own DNA and replicate independently of the cell cycle. Mitochondria also play a role in regulating cellular metabolism and apoptosis.


Where does Oxidative metabolism take place?

Oxidative metabolism takes place primarily in the mitochondria of cells. Mitochondria are often referred to as the powerhouse of the cell because they generate the majority of a cell's energy through processes like the citric acid cycle and oxidative phosphorylation.


What does mitochondria and fire have in common?

Both of the produce heat. High metabolism produce heat in mitochondria.


What is the mitochondrial function?

The main function of mitochondria is to produce energy in the form of ATP through a process called cellular respiration. Mitochondria also play a role in regulating cellular metabolism, generating heat, and signaling cell death. Additionally, they are involved in various cellular processes such as calcium signaling and lipid metabolism.


Are lysosomes role in metabolism excretion?

Lysosomes are not directly involved in metabolism. They primarily function in digestion and waste removal within cells by breaking down unwanted materials, such as cellular debris or foreign particles, into simpler components for recycling or excretion. Metabolism involves a series of chemical reactions that occur in organelles like the mitochondria, not in lysosomes.


Why is the mitochondria important to the animal cell?

The mitochondria is important to animal cells because it is the powerhouse of the cell. It produces energy in the form of ATP through cellular respiration. It also plays a role in regulating cell metabolism and apoptosis (programmed cell death).


What is the Science definition for mitochondria?

Mitochondria are membrane-bound organelles found in the cytoplasm of eukaryotic cells. They are known as the powerhouse of the cell as they generate most of the cell's supply of adenosine triphosphate (ATP), used as a source of chemical energy. Mitochondria also play a role in cellular metabolism and apoptosis.