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Characterization of meprin, a membrane-bound metalloendopeptidase from mouse kidney
Abstract:
Meprin is an intrinsic protein of the brush border, a specialized plasma membrane, of the mouse kidney. It is a metalloendopeptidase that contains 1 mol of zinc and 3 mol of calcium per mol of the 85,000-Mr subunit. The enzyme is isolated, and active, as a tetramer. The behaviour of the enzyme on SDS/polyacrylamide gels in the presence and absence of beta-mercaptoethanol indicates that the subunits are of the same Mr (approx. 85,000) and held together by intersubunit S--S bridges. Eight S-carboxymethyl-L-cysteine residues were detected after reduction of the enzyme with beta-mercaptoethanol and carboxymethylation with iodoacetate. The enzyme is a glycoprotein and contains approx. 18% carbohydrate. Most of the carbohydrate is removed by endoglycosidase F, indicating that the sugar residues are N-linked. The isoelectric point of the enzyme is between pH 4 and 5, and the purified protein yields a pattern of evenly spaced bands in this range on isoelectric focusing. The peptide-bond specificity of the enzyme has been determined by using the oxidized B-chain of insulin as substrate. In all, 15 peptide degradation products were separated by h.p.l.c. and analysed for their amino acid content and N-terminal amino acid residue. The prevalent peptide-bond cleavages were between Gly20 and Glu21, Phe24 and Phe25 and between Phe25 and Tyr26. Other sites of cleavage were Leu6-Cysteic acid7, Ala14-Leu15, His10-Leu11, Leu17-Val18, Gly8-Ser9, Leu15-Tyr16, His5-Leu6. These results indicate that meprin has a preference for peptide bonds that are flanked by hydrophobic or neutral amino acid residues, but hydrolysis is not limited to these bonds. The ability of meprin to hydrolyse peptide bonds between small neutral and negatively charged amino acid residues distinguishes it from several other metalloendopeptidases.
Insights
Meprin, a mouse kidney metalloendopeptidase, is a glycoprotein tetramer. Its specific peptide bond hydrolysis, particularly at hydrophobic residues, distinguishes it from other metalloendopeptidases.
Area of Science:
- Biochemistry
- Molecular Biology
- Enzymology
Background:
- Meprin is an intrinsic metalloendopeptidase found in the brush border of mouse kidney.
- It functions as an active tetramer composed of 85,000-Mr subunits linked by disulfide bridges.
- The enzyme contains zinc and calcium ions, crucial for its catalytic activity.
Purpose of the Study:
- To characterize the biochemical properties of mouse kidney meprin.
- To determine the peptide-bond specificity of meprin.
- To elucidate the structural features of the meprin enzyme.
Main Methods:
- Protein purification and characterization using SDS-PAGE and isoelectric focusing.
- Enzyme activity assays using the oxidized B-chain of insulin.
- Analysis of peptide degradation products by high-performance liquid chromatography (HPLC).
- Glycoprotein analysis using endoglycosidase F.
Main Results:
- Meprin subunits are identical (Mr ~85,000) and linked by S-S bonds.
- The enzyme is a glycoprotein containing approximately 18% N-linked carbohydrates.
- Meprin exhibits specificity for peptide bonds flanked by hydrophobic or neutral amino acid residues.
- It can also hydrolyze bonds involving small neutral and negatively charged residues, differentiating it from other metalloendopeptidases.
Conclusions:
- Meprin possesses unique substrate specificity among metalloendopeptidases.
- Its glycoprotein nature and quaternary structure are key features.
- Further research into meprin's biological roles is warranted based on its distinct enzymatic properties.