(k) When two proteins interact to form a bound complex, on average, what percentage of each protein's surface area is buried at the interface between them? (1) On average, approximately how large (in Å?) is the buried surface area of a protein-protein interaction complex? (m) Define what is meant by the desolvation energy penalty. (n) What is the special name given to the water molecules that are trapped between two interacting proteins? (0) Proteins that bind to DNA or RNA have surfaces that are enhanced in positive charge. Explain why this is the case.

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I need help with my physical chemistry homework please.

(k) When two proteins interact to form a bound complex, on average, what percentage of each
protein's surface area is buried at the interface between them?
(1) On average, approximately how large (in Å?) is the buried surface area of a protein-protein
interaction complex?
(m) Define what is meant by the desolvation energy penalty.
(n) What is the special name given to the water molecules that are trapped between two interacting
proteins?
(0) Proteins that bind to DNA or RNA have surfaces that are enhanced in positive charge. Explain
why this is the case.
Transcribed Image Text:(k) When two proteins interact to form a bound complex, on average, what percentage of each protein's surface area is buried at the interface between them? (1) On average, approximately how large (in Å?) is the buried surface area of a protein-protein interaction complex? (m) Define what is meant by the desolvation energy penalty. (n) What is the special name given to the water molecules that are trapped between two interacting proteins? (0) Proteins that bind to DNA or RNA have surfaces that are enhanced in positive charge. Explain why this is the case.
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