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What are the most common catalysts in living organisms?

The most common catalysts in living organisms are enzymes. Enzymes are proteins that speed up chemical reactions in cells by lowering the activation energy needed for the reactions to occur. They are specific to particular substrates and play essential roles in metabolism, growth, and other biological processes.


What proteins act as biochemical catalysts?

Enzymes are proteins that act as biochemical catalysts in living organisms. They play a crucial role in speeding up chemical reactions by lowering the activation energy required for the reactions to occur.


What is the substance that a catalyst works on?

The substrate on which a catalyst works is called its substrate


In living things special proteins called what are biological catalysts?

In living organisms, special proteins called enzymes serve as biological catalysts. They accelerate chemical reactions by lowering the activation energy required for the reactions to occur. Enzymes are crucial for various biological processes, including metabolism and DNA replication, and they operate under specific conditions of temperature and pH to maintain efficiency.


How do catalysts affect the reaction s in living things?

In living things, catalysts help increase the rate of chemical reactions without being consumed in the process. They lower the activation energy needed for the reaction to occur, making it more efficient. This allows living organisms to maintain the reactions necessary for life at the appropriate speed.

Related Questions

Where do you find biological catalyst?

These catalysts are called enzymes and exist in living organisms.


Are enzyme's catalysts?

Catalyst work in non living things while enzyme work inside living things. They are not catalyst but instead they can be called biocatalysts. Hope it helps.


What Specialized proteins that act as catalysts for chemical reactions are?

These are called catalysts.


What are the most common catalysts in living organisms?

The most common catalysts in living organisms are enzymes. Enzymes are proteins that speed up chemical reactions in cells by lowering the activation energy needed for the reactions to occur. They are specific to particular substrates and play essential roles in metabolism, growth, and other biological processes.


Is a catalyst protein or chemical?

Some catalysts called enzymes are proteins. These are mainly found in living organisms. Other, inorganic catalysts are different sorts of chemical substances including platinum, manganese dioxide, and sulfuric acid.


Can bacteria live inside a living organisms while not harming them?

yes they are called vectors


Are organic catalysts called polysaccharides?

No, polysaccharides are a kind of sugars with much higher molecular mass and composed of monomers.The organic catalysts are catalysts that posses organic nature (They are carbon's compounds).The most common organic catalysts are the enzymes (which are proteins in fact) found in the living organisms.


What proteins act as biochemical catalysts?

Enzymes are proteins that act as biochemical catalysts in living organisms. They play a crucial role in speeding up chemical reactions by lowering the activation energy required for the reactions to occur.


What is the substance that a catalyst works on?

The substrate on which a catalyst works is called its substrate


Why are catalysts essential to biochemical reactions that occur in living organism What do you call these special biological catalysts?

Without catalysts many chemical reactions cannot occur; biological catalysts are called enzymes.


How do catalysts affect the reaction s in living things?

In living things, catalysts help increase the rate of chemical reactions without being consumed in the process. They lower the activation energy needed for the reaction to occur, making it more efficient. This allows living organisms to maintain the reactions necessary for life at the appropriate speed.


Why do living things depend on catalysts?

Without catalysts the majority of chemical reactions required for organisms to survive would not proceed fast enough or would require more energy than can be provided.