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A substance that can speed up a chemical reaction in a living organism?

An enzyme works to speed up chemical reactions in a living organism.


Which is a type of protein that speeds up chemical reactions in living things?

An enzyme is a type of protein that speeds up chemical reactions in living things by lowering the activation energy of said reactions.


Chemical reactions occur on the active on an enzyme?

Enzymes speed up chemical reactions inside living organisms. They are made up of proteins.


What a substance that helps regulate and speed up chemical reactions in living things?

an enzyme


Type of protein found in all living things that increases the rate of chemical reactions?

enzyme


Is an enzyme a type of protein?

Yes, an enzyme is a type of protein that acts as a biological catalyst to speed up chemical reactions in living organisms.


What is the name of the substance that speeds up chemical reactions?

This substance is called catalyst; and in living systems it is an enzyme.


What type of biochemical molecule is an enzyme?

An enzyme is a type of protein that acts as a biological catalyst, speeding up chemical reactions in living organisms.


What is importance of enzyme?

They carry out chemical reactions to the cells and breaks down things to be digested. They also allow many chemical reactions to occur within the homeostasis constraints of a living system.


A sentence with the word enzyme?

A cell contains thousands of different types of enzyme molecules, each specific to a particular chemical reaction.


Is cellulose an enzyme?

No, cellulose is not an enzyme. Cellulose is a complex carbohydrate found in the cell walls of plants, while enzymes are proteins that catalyze chemical reactions in living organisms.


What statement best describes an individual enzyme?

An enzyme is a protein catalyst that speeds up chemical reactions in living organisms by lowering the activation energy required for the reactions to occur. Each enzyme is specific to a particular reaction or group of reactions and can be affected by factors such as pH, temperature, and substrate concentration.