A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda).
BACKGROUND: Trichinella spiralis is an unusual parasitic intracellular nematode causing dedifferentiation of the host myofiber. Trichinella proteomic analyses have identified proteins that act at the interface between the parasite and the host and are probably important for the infection and pathoge...
Main Authors: | , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2010-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC2954182?pdf=render |
id |
doaj-4508476196af4c34b4826bfb8db07821 |
---|---|
record_format |
Article |
spelling |
doaj-4508476196af4c34b4826bfb8db078212020-11-25T02:56:47ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-01510e1334310.1371/journal.pone.0013343A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda).Georgi RadoslavovRositsa JordanovaDenitsa TeofanovaKatya GeorgievaPetar HristovMarco Salomone-StagniEva LiebauIlia BankovBACKGROUND: Trichinella spiralis is an unusual parasitic intracellular nematode causing dedifferentiation of the host myofiber. Trichinella proteomic analyses have identified proteins that act at the interface between the parasite and the host and are probably important for the infection and pathogenesis. Many parasitic proteins, including a number of metalloproteins are unique for the nematodes and trichinellids and therefore present good targets for future therapeutic developments. Furthermore, detailed information on such proteins and their function in the nematode organism would provide better understanding of the parasite-host interactions. METHODOLOGY/PRINCIPAL FINDINGS: In this study we report the identification, biochemical characterization and localization of a novel poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP). The native Ts-PCHTP was purified from T. spiralis muscle larvae that were isolated from infected rats as a model system. The sequence analysis showed no homology with other proteins. Two unique poly-cysteine domains were found in the amino acid sequence of Ts-PCHTP. This protein is also the first reported natural histidine tailed protein. It was suggested that Ts-PCHTP has metal binding properties. Total Reflection X-ray Fluorescence (TXRF) assay revealed that it binds significant concentrations of iron, nickel and zinc at protein:metal ratio of about 1:2. Immunohistochemical analysis showed that the Ts-PCHTP is localized in the cuticle and in all tissues of the larvae, but that it is not excreted outside the parasite. CONCLUSIONS/SIGNIFICANCE: Our data suggest that Ts-PCHTP is the first described member of a novel nematode poly-cysteine protein family and its function could be metal storage and/or transport. Since this protein family is unique for parasites from Superfamily Trichinelloidea its potential applications in diagnostics and treatment could be exploited in future.http://europepmc.org/articles/PMC2954182?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Georgi Radoslavov Rositsa Jordanova Denitsa Teofanova Katya Georgieva Petar Hristov Marco Salomone-Stagni Eva Liebau Ilia Bankov |
spellingShingle |
Georgi Radoslavov Rositsa Jordanova Denitsa Teofanova Katya Georgieva Petar Hristov Marco Salomone-Stagni Eva Liebau Ilia Bankov A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). PLoS ONE |
author_facet |
Georgi Radoslavov Rositsa Jordanova Denitsa Teofanova Katya Georgieva Petar Hristov Marco Salomone-Stagni Eva Liebau Ilia Bankov |
author_sort |
Georgi Radoslavov |
title |
A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). |
title_short |
A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). |
title_full |
A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). |
title_fullStr |
A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). |
title_full_unstemmed |
A novel secretory poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP) from Trichinella spiralis (Nematoda). |
title_sort |
novel secretory poly-cysteine and histidine-tailed metalloprotein (ts-pchtp) from trichinella spiralis (nematoda). |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2010-01-01 |
description |
BACKGROUND: Trichinella spiralis is an unusual parasitic intracellular nematode causing dedifferentiation of the host myofiber. Trichinella proteomic analyses have identified proteins that act at the interface between the parasite and the host and are probably important for the infection and pathogenesis. Many parasitic proteins, including a number of metalloproteins are unique for the nematodes and trichinellids and therefore present good targets for future therapeutic developments. Furthermore, detailed information on such proteins and their function in the nematode organism would provide better understanding of the parasite-host interactions. METHODOLOGY/PRINCIPAL FINDINGS: In this study we report the identification, biochemical characterization and localization of a novel poly-cysteine and histidine-tailed metalloprotein (Ts-PCHTP). The native Ts-PCHTP was purified from T. spiralis muscle larvae that were isolated from infected rats as a model system. The sequence analysis showed no homology with other proteins. Two unique poly-cysteine domains were found in the amino acid sequence of Ts-PCHTP. This protein is also the first reported natural histidine tailed protein. It was suggested that Ts-PCHTP has metal binding properties. Total Reflection X-ray Fluorescence (TXRF) assay revealed that it binds significant concentrations of iron, nickel and zinc at protein:metal ratio of about 1:2. Immunohistochemical analysis showed that the Ts-PCHTP is localized in the cuticle and in all tissues of the larvae, but that it is not excreted outside the parasite. CONCLUSIONS/SIGNIFICANCE: Our data suggest that Ts-PCHTP is the first described member of a novel nematode poly-cysteine protein family and its function could be metal storage and/or transport. Since this protein family is unique for parasites from Superfamily Trichinelloidea its potential applications in diagnostics and treatment could be exploited in future. |
url |
http://europepmc.org/articles/PMC2954182?pdf=render |
work_keys_str_mv |
AT georgiradoslavov anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT rositsajordanova anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT denitsateofanova anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT katyageorgieva anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT petarhristov anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT marcosalomonestagni anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT evaliebau anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT iliabankov anovelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT georgiradoslavov novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT rositsajordanova novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT denitsateofanova novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT katyageorgieva novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT petarhristov novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT marcosalomonestagni novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT evaliebau novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda AT iliabankov novelsecretorypolycysteineandhistidinetailedmetalloproteintspchtpfromtrichinellaspiralisnematoda |
_version_ |
1724712263407894528 |