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Biomedical subjects

G Mazur

Publications and source records attributed to G Mazur.

At least 73 records · Page 4Linked to original sources

[Perissodactyla: the primary structure of hemoglobins from the lowland tapir (Tapirus terrestris): glutamic acid in position 2 of the beta chains].

The hemoglobins from a lowland tapir (Tapirus terrestris) were analysed and the complete primary structure is described. The globin chains were separated on CM cellulose column in 8M urea and the amino-acid sequences were determined in the liquid phase sequenator. The results show that globin consists of two alpha chains (alpha I and alpha II) and beta major and beta minor components. The alpha chains differ only at one position: alpha I contains aspartic acid and alpha II glycine. The beta chains are heterogeneous: aspartic and glutamic acid were found at position beta 21 and beta 73 of the beta major components and asparagine and serine at position beta 139. In the beta minor components four positions were found with more than one amino acid, namely beta 2, beta 4, beta 6 and beta 56. The sequences are compared with those of man, horse and rhinoceros. Four residues of horse methemoglobin, which are involved in the alpha 1 beta 1 contacts are substituted in tapir hemoglobins. In the alpha chains: alpha 107(G14)Ser----Val, alpha 111-(G18) Val----Leu, alpha 115(GH3) Asn----Asp or Gly; in the beta chains: beta 116(G18) Arg----Gln. The amino acid at beta 2 of the major components is glutamic acid while glutamine and histidine are found in the minor components. Although glutamic acid, a binding site for ATP, does not interact with 2,3-bisphosphoglycerate, glutamine and histidine in the minor components are responsible for the slight effect of 2,3-bisphosphoglycerate on tapir hemoglobin.

Amino Acid Sequence↗

[The sequence of hemoglobins from an asiatic wild ass and a mountain zebra].

The hemoglobins from an asiatic wild ass (Equus hemionus kulan) and a mountain zebra (Equus zebra) were analysed and the complete primary structure of the alpha and beta chains are described. The wild ass globin was separated in two alpha chains (alpha I and alpha II) and one beta-chain by means of chromatography on CM-cellulose in 8M urea buffer at pH 6.5. The wild ass globin shows polymorphism in the alpha-chain like the horse hemoglobin. Under the same chromatographic conditions only one alpha and one beta-chain were found in the zebra globin. The primary structures were determined with the aid of an automatic liquid phase sequenator. A comparison of the sequence data shows there is only one amino acid differing between the alpha I- and alpha II-chain of wild ass. In position 20 asparagine (apha I) is substituted for histidine (alpha II). There are three amino acid replacements between the alpha I-chain in wild ass and an alpha-chain in horse (alpha 24 Phe, alpha 60 Lys); alpha I20 Asn leads to His, alpha 23 Asp leads to Glu, alpha 131 Thr leads to Ser. Two amino acid substitutions were found between the alpha-chains in zebra and horse, alpha 20 Asn leads to His and alpha 131 Thr leads to Ser. The beta-chains of wild ass zebra hemoglobins are identical, but two amino acid differences were found between wild ass and horse globins, beta 52 Ala leads to Gly and beta 87 Gln leads to Ala.

Amino Acid Sequence↗

[The primary structure of the hemoglobin from a white rhinoceros (Ceratotherium simum, perissodactyla): beta 2 Glu].

The hemoglobin from a white rhinoceros (Ceratotherium simum) was analysed and the complete primary structure of the alpha and beta chains is described. The globin chains were separated on CM-cellulose column in 8M urea buffer. The amino acid sequences were mainly determined by automatic degradation of tryptic peptides in the sequenator. The results show, that globin consists of one alpha- and several beta-chain types. The beta chains differ at position beta 62 where the amino acids threonine, serine and alanine were identified and at position beta 116 where glutamine or lysine were found. The sequences are compared with those of horse, wild ass and zebra hemoglobin. Five amino acid residues of horse hemoglobin, which are involved in the alpha 1 beta 1 contacts are substituted in white rhinoceros hemoglobin. These substitutions are alpha 35 Gly leads to Ser, alpha 107 Ser leads to Val, alpha 111 Val leads to Leu, alpha 115 Asn leads to Gln and beta 116 Arg leads to Gln or Lys. Furthermore glutamic acid was found at position beta 2 of rhinoceros hemoglobin. In most mammalian hemoglobins the amino acid at this position is histidin which is one of the residues that binds, 2,3-bisphosphoglycerat in deoxyhemoglobin. In this way 2,3-bisphosphoglycerat controls the oxygen affinity of hemoglobin.

Amino Acid Sequence↗