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There are almost 500 naturally occurring variants of hemoglobin. Most are the result of a single amino acid substitution in a globin polypeptide chain. Some variants produce clinical illness, though not all variants have deleterious effects. A brief sample follows.
HbS (sickle-cell Hb): substitutes a Val for a Glu on the surface
Hb Cowtown: eliminates ion pairs at N and C terminus of subunits
Hb Memphis: substitutes one uncharged polar residue for another of similar size on the surface
Hb Bibba: substitutes a Pro for a Leu involved in an alpha helix
Hb Milwaukee: substitutes a Glu for a Val
Hb Providence: substitutes an Asn for a Lys that normally projects into the central cavity of the tetramer
Hb Philly: substitutes a Phe for a Tyr, disrupting hydrogen bonding at the a1b1 interface
Identify and explain your choices for each of the following:
(a) The Hb variant that functions similar to Mb.
(b) The variant(s) most likely to show a larger Kd for BPG
Can someone please help me to answer this question with a thorough explanation? Thank you in...
There are almost 500 naturally occurring variants of hemoglobin. Most are the result of a single amino ad substitution in a globin polypeptide chain. Some variants produce clinical illness, though not all variants have deleterious effects Identify the variant or variants that can be described by each of the three statements at the right by placing the letter corresponding to the statement in the blue oútlined rectangle next to the variant. StatementB may describe more than one variant, and a...
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Question Completion Status: Question 10: The genetic code consists of 64 triplets of nucleotides (called codons). Each codon (with the exception of the 3 stop codons) encodes for one of the 20 amino acids used in the synthesis of proteins. This produces some redundancy in the code as most amino acids are encoded by more than one codon. One codon, AUG serves two related functions: it signals...