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Q.Examine the following fragment of beta globin chain in human haemoglobin and identify the hereditary disease with reason.

Kerala DhseKerala DHSE Plus Two Board 2017Subjective· 2mImportance★★★★★
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The given fragment shows Valine at position 6 instead of the normal Glutamic acid -- this single amino-acid substitution in the beta-globin chain is the hallmark of sickle-cell anaemia.

The normal human beta-globin chain begins: 1-Val, 2-His, 3-Leu, 4-Thr, 5-Pro, 6-Glu, 7-Glu (with Glutamic acid at BOTH the 6th and 7th positions).

In the fragment given, the sequence is 1-Val, 2-His, 3-Leu, 4-Thr, 5-Pro, 6-Val, 7-Glu -- position 6 has Valine instead of the normal Glutamic acid.

This is exactly the molecular change that causes sickle-cell anaemia. It arises from a point mutation in the sixth codon of the beta-globin gene, where GAG (codes for Glutamic acid) changes to GUG (codes for Valine) -- a single base substitution, a classic example of how a change of just one nucleotide can alter the phenotype (sickle-cell anaemia is inherited as an autosomal recessive Mendelian disorder).

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