Usage Examples
Filter by Meaning The presence of a specific permease in the plant roots enables the uptake of essential nutrients from the soil.
The discovery of a novel sugar permease has opened up new avenues for understanding carbohydrate metabolism.
The permease embedded in the plasma membrane of red blood cells facilitates the transport of ions and molecules.
The scientist discovered a new type of permease that facilitates the transport of ions across the plasma membrane.
The permease plays a crucial role in maintaining the osmotic balance of the cell.
Researchers are studying the structure of the sodium permease to understand its mechanism of action.
The discovery of a novel permease in plant roots could revolutionize our understanding of nutrient uptake.
The maltose permease is responsible for the transport of maltose into bacterial cells.
The proton permease enables the movement of protons across the mitochondrial membrane during cellular respiration.
The absence of a specific permease in the intestinal cells can lead to malabsorption of certain nutrients.
The mutation in the chloride permease gene resulted in a dysfunction of chloride transport in the lungs.
Mutations in the lactose permease gene can result in lactose intolerance.
The absence of a particular permease in the intestinal lining can lead to malabsorption of nutrients.
The proton permease plays a crucial role in maintaining the pH balance within the cell.
The permease enables the uptake of glucose molecules across the intestinal membrane.
The permease in the cell membrane allows glucose molecules to enter the cell.
The aquaporin permease facilitates the movement of water molecules across the cell membrane.
The sodium-ion permease is crucial for maintaining the proper balance of ions in nerve cells.
The function of the lactose permease is to transport lactose across the bacterial cell membrane.
The efficiency of a permease determines the rate at which molecules can cross the cell membrane.
The researchers studied the structure of the permease to understand its mechanism of action.
The expression of the potassium permease gene is regulated by certain environmental factors.
The permease in the cell membrane allows the passage of glucose molecules.
The malfunctioning permease in the kidney cells led to the accumulation of toxins in the body.
The genetic mutation affected the permease, impairing the transport of amino acids across the cell membrane.
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