Which pump transports Ca2+ back into the sarcoplasmic reticulum during relaxation?

Study for the Anatomy and Physiology Muscular System Test. Review flashcards and take multiple choice quizzes, each with hints and explanations to increase your comprehension. Prepare for success!

Multiple Choice

Which pump transports Ca2+ back into the sarcoplasmic reticulum during relaxation?

Explanation:
Calcium must be removed from the cytosol to allow muscle fibers to relax, and the main way this happens is by actively moving Ca2+ back into the sarcoplasmic reticulum. This is achieved by SERCA, a Ca2+-ATPase situated in the SR membrane. It uses energy from ATP hydrolysis to pump Ca2+ from the cytosol into the SR lumen, lowering cytosolic Ca2+ and stopping actin–myosin interactions so relaxation can occur. Other pumps work in different places or ways: the PMCA pump moves Ca2+ out of the cell across the plasma membrane; the Na+/Ca2+ exchanger uses the sodium gradient to remove Ca2+ from the cell; and the Ca2+/H+ exchanger exchanges Ca2+ for H+ but does not load Ca2+ back into the SR. Therefore, the SR Ca2+-ATPase (SERCA) is the pump responsible for Ca2+ uptake during relaxation.

Calcium must be removed from the cytosol to allow muscle fibers to relax, and the main way this happens is by actively moving Ca2+ back into the sarcoplasmic reticulum. This is achieved by SERCA, a Ca2+-ATPase situated in the SR membrane. It uses energy from ATP hydrolysis to pump Ca2+ from the cytosol into the SR lumen, lowering cytosolic Ca2+ and stopping actin–myosin interactions so relaxation can occur.

Other pumps work in different places or ways: the PMCA pump moves Ca2+ out of the cell across the plasma membrane; the Na+/Ca2+ exchanger uses the sodium gradient to remove Ca2+ from the cell; and the Ca2+/H+ exchanger exchanges Ca2+ for H+ but does not load Ca2+ back into the SR. Therefore, the SR Ca2+-ATPase (SERCA) is the pump responsible for Ca2+ uptake during relaxation.

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