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Mild acidity likely accelerates the physiological matriptase autoactivation process: a comparative study between spontaneous and acid-induced matriptase zymogen activation.
Jia, Bailing; Thompson, Hamishi A; Barndt, Robert B; Chiu, Yi-Lin; Lee, Mon-Juan; Lee, See-Chi; Wang, Jehng-Kang; Tang, Hung-Jen; Lin, Chen-Yong; Johnson, Michael D.
Afiliação
  • Jia B; Department of Gastroenterology, Henan Provincial People's Hospital, Zhengzhou, 450003, China.
  • Thompson HA; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
  • Barndt RB; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
  • Chiu YL; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
  • Lee MJ; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
  • Lee SC; Department of Biochemistry National Defense Medical Center, Taipei, 114, Taiwan.
  • Wang JK; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
  • Tang HJ; Department of Bioscience Technology, Chang Jung Christian University, Tainan, 71101, Taiwan.
  • Lin CY; Department of Medical Science, Chang Jung Christian University, Tainan, 71101, Taiwan.
  • Johnson MD; Lombardi Comprehensive Cancer Center, Department of Oncology, Georgetown University, W412 Research Building 3970 Reservoir Road NW, Washington, DC, 20057, USA.
Hum Cell ; 33(4): 1068-1080, 2020 Oct.
Article em En | MEDLINE | ID: mdl-32779152
ABSTRACT
The pathophysiological functions of matriptase, a type 2 transmembrane serine protease, rely primarily on its enzymatic activity, which is under tight control through multiple mechanisms. Among those regulatory mechanisms, the control of zymogen activation is arguably the most important. Matriptase zymogen activation not only generates the mature active enzyme but also initiates suppressive mechanisms, such as rapid inhibition by HAI-1, and matriptase shedding. These tightly coupled events allow the potent matriptase tryptic activity to fulfill its biological functions at the same time as limiting undesired hazards. Matriptase is converted to the active enzyme via a process of autoactivation, in which the activational cleavage is thought to rely on the interactions of matriptase zymogen molecules and other as yet identified proteins. Matriptase autoactivation can occur spontaneously and is rapidly followed by the formation and then shedding of matriptase-HAI-1 complexes, resulting in the presence of relatively low levels of the complex on cells. Activation can also be induced by several non-protease factors, such as the exposure of cells to a mildly acidic buffer, which rapidly causes high-level matriptase zymogen activation in almost all cell lines tested. In the current study, the structural requirements for this acid-induced zymogen activation are compared with those required for spontaneous activation through a systematic analysis of the impact of 18 different mutations in various structural domains and motifs on matriptase zymogen activation. Our study reveals that both acid-induced matriptase activation and spontaneous activation depend on the maintenance of the structural integrity of the serine protease domain, non-catalytic domains, and posttranslational modifications. The common requirements of both modes of activation suggest that acid-induced matriptase activation may function as a physiological mechanism to induce pericellular proteolysis by accelerating matriptase autoactivation.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ácidos / Serina Endopeptidases / Ativação Enzimática / Precursores Enzimáticos Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Revista: Hum Cell Ano de publicação: 2020 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Ácidos / Serina Endopeptidases / Ativação Enzimática / Precursores Enzimáticos Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Revista: Hum Cell Ano de publicação: 2020 Tipo de documento: Article País de afiliação: China