Many diseases are characterized by fibrosis, which is excess scarring. This scarring is often caused by too much collagen accumulating in the extracellular matrix. Which of the following strategies is MOST likely to work for preventing fibrosis? Altering the endomembrane system to increase collagen secretion. Altering the endomembrane system to decrease detection of the internal start transfer sequence of collagen. Altering the endomembrane system to increase collagen endocytosis. Altering the nuclear export of collagen via lamins, followed by kinesin-mediated exocytosis.

Biology: The Dynamic Science (MindTap Course List)
4th Edition
ISBN:9781305389892
Author:Peter J. Russell, Paul E. Hertz, Beverly McMillan
Publisher:Peter J. Russell, Paul E. Hertz, Beverly McMillan
Chapter5: Membranes And Transport
Section: Chapter Questions
Problem 1TYK: In the fluid mosaic model: plasma membrane proteins orient their hydrophilic sides toward the...
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Many diseases are characterized by fibrosis, which is excess scarring. This scarring is often caused by
too much collagen accumulating in the extracellular matrix. Which of the following strategies is
MOST likely to work for preventing fibrosis?
O Altering the endomembrane system to increase collagen secretion.
O Altering the endomembrane system to decrease detection of the internal start transfer sequence of collagen.
O Altering the endomembrane system to increase collagen endocytosis.
Altering the nuclear export of collagen via lamins, followed by kinesin-mediated exocytosis.
Transcribed Image Text:Many diseases are characterized by fibrosis, which is excess scarring. This scarring is often caused by too much collagen accumulating in the extracellular matrix. Which of the following strategies is MOST likely to work for preventing fibrosis? O Altering the endomembrane system to increase collagen secretion. O Altering the endomembrane system to decrease detection of the internal start transfer sequence of collagen. O Altering the endomembrane system to increase collagen endocytosis. Altering the nuclear export of collagen via lamins, followed by kinesin-mediated exocytosis.
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