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Hepatocyte growth factor activator is a serum activator of single-chain precursor macrophage-stimulating protein
Makiko Kawaguchi1, Hiroshi Orikawa, Takashi Baba
1Section of Oncopathology and Regenerative Biology, Department of Pathology, Faculty of Medicine, University of Miyazaki, Japan.
Abstract:
Macrophage-stimulating protein (MSP) is a plasma protein that circulates as a single-chain proform. It acquires biological activity after proteolytic cleavage at the Arg483-Val484 bond, a process in which serum and cell surface serine proteinases have been implicated. In this article, we report that hepatocyte growth factor activator (HGFA), a serum proteinase which activates hepatocyte growth factor in response to tissue injury, may have a critical role in the activation of pro-MSP. In vitro analysis has revealed that human HGFA efficiently cleaves human pro-MSP at the physiological activation site without further degradation, resulting in biologically active MSP, as measured by the chemotactic response and MSP-induced morphological change of peritoneal macrophages. The processing of pro-MSP by HGFA is 10-fold more efficient than processing by factor XIa. To search for a role of HGFA in pro-MSP activation, we analyzed the processing of mouse pro-MSP in sera from HGFA-knockout (HGFA(-/-)) mice. The proform of MSP was the predominant molecular form in the plasma of both wild-type and HGFA(-/-) mice. In wild-type sera, endogenous pro-MSP was progressively converted to the mature two-chain form during incubation at 37 degrees C. However, this conversion was significantly impaired in sera from HGFA(-/-) mice. The addition of recombinant HGFA to HGFA-deficient serum restored pro-MSP convertase activity in a dose-dependent manner, and a neutralizing antibody to HGFA significantly reduced the conversion of pro-MSP in wild-type serum. Moreover, initial infiltration of macrophages into the site of mechanical skin injury was delayed in HGFA(-/-) mice. We suggest that HGFA is a major serum activator of pro-MSP.
Insights
Hepatocyte growth factor activator (HGFA) is identified as a key enzyme that activates macrophage-stimulating protein (MSP). This discovery sheds light on MSP
Area of Science:
- Biochemistry
- Immunology
- Molecular Biology
Background:
- Macrophage-stimulating protein (MSP) is a plasma protein precursor that requires proteolytic cleavage for activation.
- Serum and cell surface serine proteases are known to be involved in MSP activation.
- Hepatocyte growth factor activator (HGFA) is a serum proteinase involved in tissue repair by activating hepatocyte growth factor.
Purpose of the Study:
- To investigate the role of HGFA in the activation of pro-MSP.
- To determine if HGFA can efficiently cleave pro-MSP at the physiological activation site.
Main Methods:
- In vitro cleavage assays using human pro-MSP and human HGFA.
- Analysis of mouse pro-MSP processing in sera from HGFA-knockout mice.
- Functional assays measuring macrophage chemotaxis and morphological changes induced by MSP.
- Administration of recombinant HGFA and neutralizing antibodies to HGFA.
Main Results:
- Human HGFA efficiently cleaves human pro-MSP into active MSP without further degradation.
- HGFA-mediated pro-MSP processing is 10-fold more efficient than that of factor XIa.
- Pro-MSP conversion to active MSP is significantly impaired in HGFA-knockout mouse sera.
- Recombinant HGFA restores pro-MSP activation in HGFA-deficient serum, and anti-HGFA antibodies inhibit this process in wild-type serum.
- Macrophage infiltration into skin injury sites is delayed in HGFA-knockout mice.
Conclusions:
- HGFA is a major serum activator of pro-MSP.
- HGFA plays a critical role in the physiological activation of MSP.
- The HGFA-mediated activation of MSP is important for macrophage recruitment during tissue injury.
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