Carboxypeptidase A
From Proteopedia
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Bovine CPA exists as a single unit with [http://en.wikipedia.org/wiki/Molecular_symmetry C1 symmetry] in the pancreatic physiological environment. The single polypeptide chain contains a mixture of <scene name='69/694222/3cpasecondarystructure/1'>α-helices and β-sheets</scene>, of which there are a total of 11 helices (one [http://en.wikipedia.org/wiki/310_helix 3<sub>10</sub>], eight [http://en.wikipedia.org/wiki/Alpha_helix 3.6<sub>13</sub>]) and ten [http://en.wikipedia.org/wiki/Beta_sheet β-strands]. The helices are shown in magenta, and the β-strands are displayed in yellow. | Bovine CPA exists as a single unit with [http://en.wikipedia.org/wiki/Molecular_symmetry C1 symmetry] in the pancreatic physiological environment. The single polypeptide chain contains a mixture of <scene name='69/694222/3cpasecondarystructure/1'>α-helices and β-sheets</scene>, of which there are a total of 11 helices (one [http://en.wikipedia.org/wiki/310_helix 3<sub>10</sub>], eight [http://en.wikipedia.org/wiki/Alpha_helix 3.6<sub>13</sub>]) and ten [http://en.wikipedia.org/wiki/Beta_sheet β-strands]. The helices are shown in magenta, and the β-strands are displayed in yellow. | ||
| - | Six different biological active forms of the monomeric CPA unit exist. <scene name='69/694222/3cpacleavageforms/1'>Three of these active forms</scene> are produced following the cleavage of amino acid residue segments from the initial [http://en.wikipedia.org/wiki/Zymogen zymogen], or proenzyme, by trypsin and chymotrypsin, which are also found in the pancreas. Cleavage by trypsin generates either the '''α-form''' (residues Ala1-Asn307) or the '''β-form''' (residues Ser3-Asn307). Chymotrypsin cleavage generates the '''γ-form''' (residues Asn8-Asn307). The <scene name='69/694222/3cpageneticforms/1'>other three active forms</scene> of CPA arise from [http://en.wikipedia.org/wiki/Genetic_variation genetic variation] in residues located at three separate positions of the polypeptide chain. The differences include the following: Ile/Val179, Ala/Glu228, and Val/Leu305.<ref name="CPA1" /> Each of the six biologically active monomeric units carry out the same function of hydrolyzing the C-terminal [http://en.wikipedia.org/wiki/Peptide_bond peptide bond] of a polypeptide substrate. | + | Six different biological active forms of the monomeric CPA unit exist. <scene name='69/694222/3cpacleavageforms/1'>Three of these active forms</scene> are produced following the cleavage of amino acid residue segments from the initial [http://en.wikipedia.org/wiki/Zymogen zymogen], or proenzyme, by trypsin and chymotrypsin, which are also found in the pancreas. Cleavage by trypsin generates either the '''α-form''' (residues Ala1-Asn307) or the '''β-form''' (residues Ser3-Asn307). Chymotrypsin cleavage generates the '''γ-form''' (residues Asn8-Asn307). The α-form essentially is the protein without any additional residue cleavages. The Ala and Arg residues, shown in red and white respectively, are cleaved in the β-form. In addition to the red and white residues, the residues displayed in yellow are cleaved to give the γ-form. The <scene name='69/694222/3cpageneticforms/1'>other three active forms</scene> of CPA arise from [http://en.wikipedia.org/wiki/Genetic_variation genetic variation] in residues located at three separate positions of the polypeptide chain. The differences include the following: Ile/Val179, Ala/Glu228, and Val/Leu305.<ref name="CPA1" /> Each of the six biologically active monomeric units carry out the same function of hydrolyzing the C-terminal [http://en.wikipedia.org/wiki/Peptide_bond peptide bond] of a polypeptide substrate. |
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Carboxypeptidase A from Bos taurus
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References
- ↑ 1.0 1.1 1.2 1.3 Bukrinsky JT, Bjerrum MJ, Kadziola A. Native carboxypeptidase A in a new crystal environment reveals a different conformation of the important tyrosine 248. Biochemistry. 1998 Nov 24;37(47):16555-64. PMID:9843422 doi:10.1021/bi981678i
- ↑ Christianson DW, Lipscomb WN. Carboxypeptidase A. Acc. Chem. Res. 1989;22:62-9.
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Michael Melbardis, Douglas Schnell, Thomas Baldwin, Geoffrey C. Hoops, Michal Harel
