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Updated: Aug 2, 2026

Production of Disulfide-stabilized Transmembrane Peptide Complexes for Structural Studies
Published on: March 6, 2013
Identification of the disulfide bonds in human plasma protein SP-40,40 (apolipoprotein-J)
N H Choi-Miura1, Y Takahashi, Y Nakano
1Department of Physiological Chemistry, School of Pharmaceutical Sciences, Showa University, Tokyo.
Insights
This study maps the disulfide bonds in SP-40,40, a human plasma protein involved in complement and HDL. The findings reveal an antiparallel, ladder-like structure formed by inter-chain disulfide bonds, potentially explaining its function.
Area of Science:
- Biochemistry
- Molecular Biology
- Immunology
Background:
- SP-40,40 is a human plasma protein with roles in complement system regulation and high-density lipoproteins.
- Understanding its structure is crucial for elucidating its biological functions.
Purpose of the Study:
- To determine the precise locations of disulfide bonds within the SP-40,40 protein.
- To investigate the structural organization of SP-40,40.
Main Methods:
- Purification of SP-40,40 from human seminal plasma using affinity chromatography and HPLC.
- Enzymatic digestion (trypsin, V8 protease, lysylendopeptidase) and peptide isolation via HPLC.
- Detection of disulfide bonds using 4-(aminosulfonyl)-7-fluoro-2,1,3-benzoxadiazole (ABD-F).
- Amino acid composition and sequence analysis of disulfide-containing peptides.
Main Results:
- Identified specific inter-chain disulfide bonds: Cys58(alpha)-Cys107(beta), Cys68(alpha)-Cys99(beta), Cys75(alpha)-Cys94(beta), and Cys86(alpha)-Cys80(beta).
- Deduced an additional disulfide bond between Cys78(alpha) and Cys91(beta) due to the absence of free sulfhydryl groups.
- Observed an antiparallel, ladder-like arrangement of these disulfide bonds between the two chains of SP-40,40.
Conclusions:
- The study elucidated the complete disulfide bonding pattern of SP-40,40.
- The unique ladder-like structure formed by inter-chain disulfide bonds is a key feature of SP-40,40.
- This distinct structural arrangement may be directly related to the protein's modulatory functions in the complement system and its role in lipoproteins.
Abstract:
SP-40,40, a human plasma protein, is a modulator of the membrane attack complex formation of the complement system as well as a subcomponent of high-density lipoproteins. In the present study, the positions of the disulfide bonds in SP-40,40 were determined. SP-40,40 was purified from human seminal plasma by affinity chromatography using an anti-SP-40,40 monoclonal antibody and reversed-phase, high-performance liquid chromatography (HPLC). The protein was digested with trypsin and the fragments were separated by reversed-phase HPLC. The peptides containing disulfide bonds were fluorophotometrically detected with 4-(aminosulfonyl)-7-fluoro-2,1,3-benzoxadiazole (ABD-F). The peptides containing more than two disulfide bonds were further digested with Staphylococcus aureus V8 protease and lysylendopeptidase, and the fragments were isolated by HPLC. The amino acid compositions and the amino acid sequences of the peptides containing only a disulfide bond were determined. Disulfide bonds thus determined were between Cys58(alpha)-Cys107(beta), Cys68(alpha)-Cys99(beta), Cys75(alpha)-Cys94(beta), and Cys86(alpha)-Cys80(beta). Since there was no free sulfhydryl groups in the SP-40,40 molecule, Cys78(alpha) and Cys91(beta) should also be linked by a disulfide bond. It is notable that all of the disulfide bonds in SP-40,40 are not only formed by inter-chain pairing, but also appear to form an antiparallel ladder-like structure between the two chains. The unique structure could be related to the functions of SP-40,40.
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