Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration

Although the global spread of the emerging zoonosis, human angiostrongyliasis, has attracted increasing attention, understanding of specific gene function has been impeded by the inaccessibility of genetic manipulation of the pathogen nematode causing this disease, Angiostrongylus cantonensis. Many...

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Main Authors: Long Ying, Cao Binbin, Yu Liang, Tukayo Meks, Feng Chonglv, Wang Yinan, Luo Damin
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:Parasite
Subjects:
Online Access:http://dx.doi.org/10.1051/parasite/2015037
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spelling doaj-956ea2b546914f6d850f832b02ec6eaf2021-03-02T11:13:18ZengEDP SciencesParasite1776-10422015-01-01223710.1051/parasite/2015037parasite150074Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetrationLong YingCao BinbinYu LiangTukayo MeksFeng ChonglvWang YinanLuo DaminAlthough the global spread of the emerging zoonosis, human angiostrongyliasis, has attracted increasing attention, understanding of specific gene function has been impeded by the inaccessibility of genetic manipulation of the pathogen nematode causing this disease, Angiostrongylus cantonensis. Many parasitic proteases play key roles in host-parasite interactions, but those of A. cantonensis are always expressed as the inactive form in prokaryotic expression systems, thereby impeding functional studies. Hence, a lentiviral system that drives secreted expression of target genes fused to a Myc-His tag was used to obtain recombinant Ac-cathB-1 with biological activity. Although this class of proteases was always reported to function in nutrition and immune evasion in parasitic nematodes, recombinant Ac-cathB-1 was capable of hydrolysis of fibronectin and laminin as well as the extracellular matrix of IEC-6 monolayer, so that the intercellular space of the IEC-6 monolayer increased 5.15 times as compared to the control, while the shape of the adherent cells partly rounded up. This suggests a probable role for this protease in intestinal epithelial penetration. The inhibition of Ac-cathB-1 enzymatic activity with antiserum partly suppressed larval penetration ability in the isolated intestine. Thus, an effective system for heterologous expression of parasite proteases is presented for studying gene function in A. cantonensis; and Ac-cathB-1 was related to larval penetration ability in the host small intestine.http://dx.doi.org/10.1051/parasite/2015037Lentiviral expressionAngiostrongylus cantonensisRecombinant Ac-cathB-1Protease
collection DOAJ
language English
format Article
sources DOAJ
author Long Ying
Cao Binbin
Yu Liang
Tukayo Meks
Feng Chonglv
Wang Yinan
Luo Damin
spellingShingle Long Ying
Cao Binbin
Yu Liang
Tukayo Meks
Feng Chonglv
Wang Yinan
Luo Damin
Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
Parasite
Lentiviral expression
Angiostrongylus cantonensis
Recombinant Ac-cathB-1
Protease
author_facet Long Ying
Cao Binbin
Yu Liang
Tukayo Meks
Feng Chonglv
Wang Yinan
Luo Damin
author_sort Long Ying
title Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
title_short Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
title_full Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
title_fullStr Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
title_full_unstemmed Angiostrongylus cantonensis cathepsin B-like protease (Ac-cathB-1) is involved in host gut penetration
title_sort angiostrongylus cantonensis cathepsin b-like protease (ac-cathb-1) is involved in host gut penetration
publisher EDP Sciences
series Parasite
issn 1776-1042
publishDate 2015-01-01
description Although the global spread of the emerging zoonosis, human angiostrongyliasis, has attracted increasing attention, understanding of specific gene function has been impeded by the inaccessibility of genetic manipulation of the pathogen nematode causing this disease, Angiostrongylus cantonensis. Many parasitic proteases play key roles in host-parasite interactions, but those of A. cantonensis are always expressed as the inactive form in prokaryotic expression systems, thereby impeding functional studies. Hence, a lentiviral system that drives secreted expression of target genes fused to a Myc-His tag was used to obtain recombinant Ac-cathB-1 with biological activity. Although this class of proteases was always reported to function in nutrition and immune evasion in parasitic nematodes, recombinant Ac-cathB-1 was capable of hydrolysis of fibronectin and laminin as well as the extracellular matrix of IEC-6 monolayer, so that the intercellular space of the IEC-6 monolayer increased 5.15 times as compared to the control, while the shape of the adherent cells partly rounded up. This suggests a probable role for this protease in intestinal epithelial penetration. The inhibition of Ac-cathB-1 enzymatic activity with antiserum partly suppressed larval penetration ability in the isolated intestine. Thus, an effective system for heterologous expression of parasite proteases is presented for studying gene function in A. cantonensis; and Ac-cathB-1 was related to larval penetration ability in the host small intestine.
topic Lentiviral expression
Angiostrongylus cantonensis
Recombinant Ac-cathB-1
Protease
url http://dx.doi.org/10.1051/parasite/2015037
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