TY - JOUR
T1 - Inhibition of TMPRSS2 by HAI-2 reduces prostate cancer cell invasion and metastasis
AU - Ko, Chun-Jung
AU - Hsu, Ting-Wei
AU - Wu, Shang-Ru
AU - Lan, Shao-Wei
AU - Hsiao, Ting-Feng
AU - Lin, Hsin-Ying
AU - Lin, Hsin-Hsien
AU - Tu, Hsin-Fang
AU - Lee, Cheng-Fan
AU - Huang, Cheng-Chung
AU - Chen, Mei-Ju May
AU - Hsiao, Pei-Wen
AU - Huang, Hsiang-Po
AU - Lee, Ming-Shyue
PY - 2020/8/10
Y1 - 2020/8/10
N2 - TMPRSS2 is an important membrane-anchored serine protease involved in human prostate cancer progression and metastasis. A serine protease physiologically often comes together with a cognate inhibitor for execution of proteolytically biologic function; however, TMPRSS2's cognate inhibitor is still elusive. To identify the cognate inhibitor of TMPRSS2, in this study, we applied co-immunoprecipitation and LC/MS/MS analysis and isolated hepatocyte growth factor activator inhibitors (HAIs) to be potential inhibitor candidates for TMPRSS2. Moreover, the recombinant HAI-2 proteins exhibited a better inhibitory effect on TMPRSS2 proteolytic activity than HAI-1, and recombinant HAI-2 proteins had a high affinity to form a complex with TMPRSS2. The immunofluorescence images further showed that TMPRSS2 was co-localized to HAI-2. Both KD1 and KD2 domain of HAI-2 showed comparable inhibitory effects on TMPRSS2 proteolytic activity. In addition, HAI-2 overexpression could suppress the induction effect of TMPRSS2 on pro-HGF activation, extracellular matrix degradation and prostate cancer cell invasion. We further determined that the expression levels of TMPRSS2 were inversely correlated with HAI-2 levels during prostate cancer progression. In orthotopic xenograft animal model, TMPRSS2 overexpression promoted prostate cancer metastasis, and HAI-2 overexpression efficiently blocked TMPRSS2-induced metastasis. In summary, the results together indicate that HAI-2 can function as a cognate inhibitor for TMPRSS2 in human prostate cancer cells and may serve as a potential factor to suppress TMPRSS2-mediated malignancy.
AB - TMPRSS2 is an important membrane-anchored serine protease involved in human prostate cancer progression and metastasis. A serine protease physiologically often comes together with a cognate inhibitor for execution of proteolytically biologic function; however, TMPRSS2's cognate inhibitor is still elusive. To identify the cognate inhibitor of TMPRSS2, in this study, we applied co-immunoprecipitation and LC/MS/MS analysis and isolated hepatocyte growth factor activator inhibitors (HAIs) to be potential inhibitor candidates for TMPRSS2. Moreover, the recombinant HAI-2 proteins exhibited a better inhibitory effect on TMPRSS2 proteolytic activity than HAI-1, and recombinant HAI-2 proteins had a high affinity to form a complex with TMPRSS2. The immunofluorescence images further showed that TMPRSS2 was co-localized to HAI-2. Both KD1 and KD2 domain of HAI-2 showed comparable inhibitory effects on TMPRSS2 proteolytic activity. In addition, HAI-2 overexpression could suppress the induction effect of TMPRSS2 on pro-HGF activation, extracellular matrix degradation and prostate cancer cell invasion. We further determined that the expression levels of TMPRSS2 were inversely correlated with HAI-2 levels during prostate cancer progression. In orthotopic xenograft animal model, TMPRSS2 overexpression promoted prostate cancer metastasis, and HAI-2 overexpression efficiently blocked TMPRSS2-induced metastasis. In summary, the results together indicate that HAI-2 can function as a cognate inhibitor for TMPRSS2 in human prostate cancer cells and may serve as a potential factor to suppress TMPRSS2-mediated malignancy.
KW - Animals
KW - Carrier Proteins/metabolism
KW - Cell Line, Tumor
KW - Disease Models, Animal
KW - Heterografts
KW - Humans
KW - Male
KW - Membrane Glycoproteins/chemistry
KW - Neoplasm Invasiveness
KW - Prostatic Neoplasms/etiology
KW - Protein Binding
KW - Protein Interaction Domains and Motifs
KW - Protein Interaction Mapping
KW - Proteinase Inhibitory Proteins, Secretory/metabolism
KW - Proteolysis
KW - Serine Endopeptidases/metabolism
U2 - 10.1038/s41388-020-01413-w
DO - 10.1038/s41388-020-01413-w
M3 - Article
C2 - 32778768
SN - 0950-9232
VL - 39
SP - 5950
EP - 5963
JO - Oncogene
JF - Oncogene
IS - 37
ER -