Targeted HAI-2 deletion causes excessive proteolysis with prolonged active prostasin and depletion of HAI-1 monomer in intestinal but not epidermal epithelial cells

Author:

Barndt Robert B1,Lee Mon-Juan123,Huang Nanxi1,Lu Dajun D1,Lee See-Chi1,Du Po-Wen14,Chang Chun-Chia5,Tsai Ping-Feng B5,Huang Yu-Siou K5,Chang Hao-Ming6,Wang Jehng-Kang4,Lai Chih-Hsin7,Johnson Michael D1,Lin Chen-Yong1ORCID

Affiliation:

1. Lombardi Comprehensive Cancer Center, Department of Oncology Georgetown University, Washington, DC 20057, USA

2. Department of Bioscience Technology, Chang Jung Christian University, Tainan 71101, Taiwan

3. Department of Medical Science Industries, Chang Jung Christian University, Tainan 71101, Taiwan

4. Department of Biochemistry National Defense Medical Center, Taipei 114, Taiwan

5. School of Medicine, National Defense Medical Center, Taipei 114, Taiwan

6. Department of Surgery, Tri-Service General Hospital, Taipei 114, Taiwan

7. Department of Dentistry Renai Branch, Taipei City Hospital, Taipei 106, Taiwan

Abstract

Abstract Mutations of SPINT2, the gene encoding the integral membrane, Kunitz-type serine inhibitor HAI-2, primarily affect the intestine, while sparing many other HAI-2-expressing tissues, causing sodium loss in patients with syndromic congenital sodium diarrhea. The membrane-bound serine protease prostasin was previously identified as a HAI-2 target protease in intestinal tissues but not in the skin. In both tissues, the highly related inhibitor HAI-1 is, however, the default inhibitor for prostasin and the type 2 transmembrane serine protease matriptase. This cell-type selective functional linkage may contribute to the organ-selective damage associated with SPINT 2 mutations. To this end, the impact of HAI-2 deletion on matriptase and prostasin proteolysis was, here, compared using Caco-2 human colorectal adenocarcinoma cells and HaCaT human keratinocytes. Greatly enhanced prostasin proteolytic activity with a prolonged half-life and significant depletion of HAI-1 monomer were observed with HAI-2 loss in Caco-2 cells but not HaCaT cells. The constitutive, high level prostasin zymogen activation observed in Caco-2 cells, but not in HaCaT cells, also contributes to the excessive prostasin proteolytic activity caused by HAI-2 loss. HAI-2 deletion also caused increased matriptase zymogen activation, likely as an indirect result of increased prostasin proteolysis. This increase in activated matriptase, however, only had a negligible role in depletion of HAI-1 monomer. Our study suggests that the constitutive, high level of prostasin zymogen activation and the cell-type selective functional relationship between HAI-2 and prostasin renders Caco-2 cells more susceptible than HaCaT cells to the loss of HAI-2, causing a severe imbalance favoring prostasin proteolysis.

Funder

National Cancer Institute

Ministry of National Defense Medical Affairs Bureau

Taipei City Hospital, Taipei

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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