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The unstable Hb Khartoum with a Pro-->Arg replacement at position beta124 was identified by isoelectrofocusing, high performance liquid chromatography, and peptide mapping in a mother and two male children of a Sudanese family. All three were heterozygous for the abnormal hemoglobin; the father and a third male child did not carry the mutation. The mother was also homozygous for two putative gamma+-thalassemia point mutations, one affecting both Agamma and Ggamma genes at IVS-II-115 (A-->G), and one affecting the Ggamma gene at the 3' untranslated region (-A) at position -6 from the polyadenylation site.

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Restriction endonuclease and analyses of DNA from a known Hb F-Yamaguchi heterozygote and three of his relatives have shown a deletion of about 5 kb, which includes one of the gamma genes. This abnormality is similar to the G gamma-thalassemia described recently [4] and is probably caused by an unequal crossing over between-G gamma- and -A gamma T-genes. The abnormal-G gamma A gamma T-X-(X = Asp leads to Asn at gamma 80) hybrid gene produces the gamma-Yamaguchi chain at a level usually seen for G gamma chains only.

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The first example of a deletion of one of the two gamma globin genes has been characterized through an analysis of the DNA of the heterozygous parent of a homozygous newborn, using restriction endonuclease mapping techniques. A deletion of approximately 5 kb was observed which was probably caused by an unequal crossing-over between the -G gamma- and -A gamma- genes resulting in the formation of a -G gamma A gamma- hybrid gene. Data on proportions of G gamma and A gamma chains in newborn babies assumed to be heterozygous for the hybrid and normal genes suggest that this hybrid gene may be producing its A gamma chain at levels normally seen only for the G gamma chain.

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