| a) Match the type of bond with the role below: Bond_type (a) phosphodiester (b) N-glycosidic (c) phosphate ester (d) hydrogen bond Role links base to pentose in nucleotide joins adjacent nucleotides in one strand joins complementary nucleotides in two strands difference between a nucleoside and a nucleotide b) Draw the structure of an adenine-thymine and a guanine-cytosine base pair as found in the Watson-Crick double-helical structure of DNA. Include all hydrogen bonds. Which is the stronger base pair and why? How would the base composition influence the melting temperature of a double helix?

Biochemistry
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ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
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Please answer all parts with explanations. This is biochemistry 

Match the type of bond with the role below:
Bond_type
(a) phosphodiester
(b) N-glycosidic
(c) phosphate ester
(d) hydrogen bond
Role
links base to pentose in nucleotide
joins adjacent nucleotides in one strand
joins complementary nucleotides in two
strands
difference between a nucleoside and a
nucleotide
Draw the structure of an adenine-thymine and a guanine-cytosine base pair as found in the Watson-Crick
double-helical structure of DNA. Include all hydrogen bonds. Which is the stronger base pair and why? How
would the base composition influence the melting temperature of a double helix?
Transcribed Image Text:Match the type of bond with the role below: Bond_type (a) phosphodiester (b) N-glycosidic (c) phosphate ester (d) hydrogen bond Role links base to pentose in nucleotide joins adjacent nucleotides in one strand joins complementary nucleotides in two strands difference between a nucleoside and a nucleotide Draw the structure of an adenine-thymine and a guanine-cytosine base pair as found in the Watson-Crick double-helical structure of DNA. Include all hydrogen bonds. Which is the stronger base pair and why? How would the base composition influence the melting temperature of a double helix?
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