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N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin

The gene product of SPINT 2, that encodes a transmembrane, Kunitz-type serine protease inhibitor independently designated as HAI-2 or placenta bikunin (PB), is involved in regulation of sodium absorption in human gastrointestinal track. Here, we show that SPINT 2 is expressed as two species of diffe...

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Autores principales: Lai, Ying-Jung J., Chang, Hsiang-Hua D., Lai, Hongyu, Xu, Yuan, Shiao, Frank, Huang, Nanxi, Li, Linpei, Lee, Ming-Shyue, Johnson, Michael D., Wang, Jehng-Kang, Lin, Chen-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4501743/
https://www.ncbi.nlm.nih.gov/pubmed/26171609
http://dx.doi.org/10.1371/journal.pone.0132163
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author Lai, Ying-Jung J.
Chang, Hsiang-Hua D.
Lai, Hongyu
Xu, Yuan
Shiao, Frank
Huang, Nanxi
Li, Linpei
Lee, Ming-Shyue
Johnson, Michael D.
Wang, Jehng-Kang
Lin, Chen-Yong
author_facet Lai, Ying-Jung J.
Chang, Hsiang-Hua D.
Lai, Hongyu
Xu, Yuan
Shiao, Frank
Huang, Nanxi
Li, Linpei
Lee, Ming-Shyue
Johnson, Michael D.
Wang, Jehng-Kang
Lin, Chen-Yong
author_sort Lai, Ying-Jung J.
collection PubMed
description The gene product of SPINT 2, that encodes a transmembrane, Kunitz-type serine protease inhibitor independently designated as HAI-2 or placenta bikunin (PB), is involved in regulation of sodium absorption in human gastrointestinal track. Here, we show that SPINT 2 is expressed as two species of different size (30-40- versus 25-kDa) due to different N-glycans on Asn-57. The N-glycan on 25-kDa HAI-2 appears to be of the oligomannose type and that on 30-40-kDa HAI-2 to be of complex type with extensive terminal N-acetylglucosamine branching. The two different types of N-glycan differentially mask two epitopes on HAI-2 polypeptide, recognized by two different HAI-2 mAbs. The 30-40-kDa form may be mature HAI-2, and is primarily localized in vesicles/granules. The 25-kDa form is likely immature HAI-2, that remains in the endoplasmic reticulum (ER) in the perinuclear regions of mammary epithelial cells. The two different N-glycans could, therefore, represent different maturation stages of N-glycosylation with the 25-kDa likely a precursor of the 30-40-kDa HAI-2, with the ratio of their levels roughly similar among a variety of cells. In breast cancer cells, a significant amount of the 30-40-kDa HAI-2 can translocate to and inhibit matriptase on the cell surface, followed by shedding of the matriptase-HAI-2 complex. The 25-kDa HAI-2 appears to have also exited the ER/Golgi, being localized at the cytoplasmic face of the plasma membrane of breast cancer cells. While the 25-kDa HAI-2 was also detected at the extracellular face of plasma membrane at very low levels it appears to have no role in matriptase inhibition probably due to its paucity on the cell surface. Our study reveals that N-glycan branching regulates HAI-2 through different subcellular distribution and subsequently access to different target proteases.
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spelling pubmed-45017432015-07-17 N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin Lai, Ying-Jung J. Chang, Hsiang-Hua D. Lai, Hongyu Xu, Yuan Shiao, Frank Huang, Nanxi Li, Linpei Lee, Ming-Shyue Johnson, Michael D. Wang, Jehng-Kang Lin, Chen-Yong PLoS One Research Article The gene product of SPINT 2, that encodes a transmembrane, Kunitz-type serine protease inhibitor independently designated as HAI-2 or placenta bikunin (PB), is involved in regulation of sodium absorption in human gastrointestinal track. Here, we show that SPINT 2 is expressed as two species of different size (30-40- versus 25-kDa) due to different N-glycans on Asn-57. The N-glycan on 25-kDa HAI-2 appears to be of the oligomannose type and that on 30-40-kDa HAI-2 to be of complex type with extensive terminal N-acetylglucosamine branching. The two different types of N-glycan differentially mask two epitopes on HAI-2 polypeptide, recognized by two different HAI-2 mAbs. The 30-40-kDa form may be mature HAI-2, and is primarily localized in vesicles/granules. The 25-kDa form is likely immature HAI-2, that remains in the endoplasmic reticulum (ER) in the perinuclear regions of mammary epithelial cells. The two different N-glycans could, therefore, represent different maturation stages of N-glycosylation with the 25-kDa likely a precursor of the 30-40-kDa HAI-2, with the ratio of their levels roughly similar among a variety of cells. In breast cancer cells, a significant amount of the 30-40-kDa HAI-2 can translocate to and inhibit matriptase on the cell surface, followed by shedding of the matriptase-HAI-2 complex. The 25-kDa HAI-2 appears to have also exited the ER/Golgi, being localized at the cytoplasmic face of the plasma membrane of breast cancer cells. While the 25-kDa HAI-2 was also detected at the extracellular face of plasma membrane at very low levels it appears to have no role in matriptase inhibition probably due to its paucity on the cell surface. Our study reveals that N-glycan branching regulates HAI-2 through different subcellular distribution and subsequently access to different target proteases. Public Library of Science 2015-07-14 /pmc/articles/PMC4501743/ /pubmed/26171609 http://dx.doi.org/10.1371/journal.pone.0132163 Text en © 2015 Lai et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lai, Ying-Jung J.
Chang, Hsiang-Hua D.
Lai, Hongyu
Xu, Yuan
Shiao, Frank
Huang, Nanxi
Li, Linpei
Lee, Ming-Shyue
Johnson, Michael D.
Wang, Jehng-Kang
Lin, Chen-Yong
N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title_full N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title_fullStr N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title_full_unstemmed N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title_short N-Glycan Branching Affects the Subcellular Distribution of and Inhibition of Matriptase by HAI-2/Placental Bikunin
title_sort n-glycan branching affects the subcellular distribution of and inhibition of matriptase by hai-2/placental bikunin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4501743/
https://www.ncbi.nlm.nih.gov/pubmed/26171609
http://dx.doi.org/10.1371/journal.pone.0132163
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