Figure 10-13 Malecular Biology of the Ceil de (Garland Science 2015) fluorescence in bleached area- BLEACH WITH LASER BEAM bleach bleached area Protein 1 RECOVERY Protein 2 The diffusion/exchange rate of a protein can be measured by photobleaching techniques such as FRAP. When there is protein exchange (i.e. if the protein is mobile), fluorescence recovery in the bleached region occurs, as shown in the figure above. The graphs below show the fluorescence measurement of an area in the cell before and after bleaching for protein 1 and protein 2. Which protein has lower mobility? Protein 1 Protein 2 time. fluorescence in bleached area- fluorescence in bleached area. bleach BLEACH time RECOVERY time-

Biology 2e
2nd Edition
ISBN:9781947172517
Author:Matthew Douglas, Jung Choi, Mary Ann Clark
Publisher:Matthew Douglas, Jung Choi, Mary Ann Clark
Chapter4: Cell Structure
Section: Chapter Questions
Problem 25CTQ: In your everyday life, you have probably noticed that certain instruments are ideal for certain...
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***
fluorescence in
bleached area-
BLEACH WITH
LASER BEAM
bleach
Protein 1
bleached area
RECOVERY
Figure 10-13 Molecular Biology of the Cell 6 (Garland Science 2015)
Protein 2
***
**
***
time
The diffusion/exchange rate of a protein can be measured by photobleaching techniques such as
FRAP. When there is protein exchange (i.e. if the protein is mobile), fluorescence recovery in the
bleached region occurs, as shown in the figure above.
The graphs below show the fluorescence measurement of an area in the cell before and after
bleaching for protein 1 and protein 2. Which protein has lower mobility?
Protein 1
Protein 2
fluorescence in
bleached area->>
fluorescence in
bleached area
bleach
BLEACH
time
RECOVERY
time
Transcribed Image Text:*** fluorescence in bleached area- BLEACH WITH LASER BEAM bleach Protein 1 bleached area RECOVERY Figure 10-13 Molecular Biology of the Cell 6 (Garland Science 2015) Protein 2 *** ** *** time The diffusion/exchange rate of a protein can be measured by photobleaching techniques such as FRAP. When there is protein exchange (i.e. if the protein is mobile), fluorescence recovery in the bleached region occurs, as shown in the figure above. The graphs below show the fluorescence measurement of an area in the cell before and after bleaching for protein 1 and protein 2. Which protein has lower mobility? Protein 1 Protein 2 fluorescence in bleached area->> fluorescence in bleached area bleach BLEACH time RECOVERY time
Which of the following explains why sodium ions cannot go through a potassium channel.
A sodium ion is much bigger than a potassium ion
The arrangement of a specific group of partially negative oxygen atoms in the structure of potassium
channel makes it highly energetically unfavorable for sodium ions to go through.
Sodium ions cause the closing of a potassium channel
none of the above
Transcribed Image Text:Which of the following explains why sodium ions cannot go through a potassium channel. A sodium ion is much bigger than a potassium ion The arrangement of a specific group of partially negative oxygen atoms in the structure of potassium channel makes it highly energetically unfavorable for sodium ions to go through. Sodium ions cause the closing of a potassium channel none of the above
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