Parasite | |
Identification of an exported heat shock protein 70 in Plasmodium falciparum | |
Shatakshi RanadeUtpal Tatu1  Shweta Chaubey1  Manish Grover1  | |
[1] Department of Biochemistry, Indian Institute of Science,Bangalore 560012,Karnataka,India | |
关键词: Trafficking; Export; Hsp70; Chaperone; Plasmodium falciparum; | |
Others : 808662 DOI : doi:10.1051/parasite/2012002 |
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received in 2012-10-17, accepted in 2012-10-26, 发布年份 2013 | |
【 摘 要 】
Host cell remodelling is a hallmark of malaria pathogenesis. It involves protein folding, unfolding and trafficking events and thus participation of chaperones such as Hsp70s and Hsp40s is well speculated. Until recently, only Hsp40s were thought to be the sole representative of the parasite chaperones in the exportome. However, based on the re-annotated Plasmodium falciparum genome sequence, a putative candidate for exported Hsp70 has been reported, which otherwise was known to be a pseudogene. We raised a specific antiserum against a C-terminal peptide uniquely present in PfHsp70-x. Immunoblotting and immunofluorescence-based approaches in combination with sub-cellular fractionation by saponin and streptolysin-O have been taken to determine the expression and localization of PfHsp70-x in infected erythrocyte. The re-annotated sequence of PfHsp70-x reveals it to be a functional protein with an endoplasmic reticulum signal peptide. It gets maximally expressed at the schizont stage of intra-erythrocytic life cycle. Majority of the protein localizes to the parasitophorous vacuole and some of it gets exported to the erythrocyte compartment where it associates with Maurer’s clefts. The identification of an exported parasite Hsp70 chaperone presents us with the fact that the parasite has evolved customized chaperones which might be playing crucial roles in aspects of trafficking and host cell remodelling.
【 授权许可】
© M. Grover et al., published by EDP Sciences, 2013
【 预 览 】
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【 参考文献 】
- [1]Acharya P, Chaubey S, Grover M, Tatu U. 2012. An exported heat shock protein associates with pathogenesis-related knobs in Plasmodium falciparum infected erythrocytes. PLoS One, 7, e44605. [PubMed]
- [2]Botha M, Pesce ER, Blatch G. 2007. The Hsp40 proteins of Plasmodium falciparum and other apicomplexa: regulating chaperone power in the parasite and the host. International Journal of Biochemistry and Cell Biology, 39, 1783–1803.
- [3]de Koning-Ward TF, Gilson PR, Boddey JA, Rug M, Smith BJ, Papenfuss AT, Sanders PRLundie RJ, Maier AG, Cowman AF, Crabb BS. 2009. A newly discovered protein export machine in malaria parasites. Nature, 459, 945–949. [PubMed]
- [4]Dixon MW, Hawthorne PL, Spielmann T, Anderson KL, Trenholme KR, Gardiner DL. 2008. Targeting of the ring exported protein 1 to the Maurer’s clefts is mediated by a twophase process. Traffic, 9, 1316–1326. [PubMed]
- [5]Gamboa D, Ho M-F, Bendezu J, Torres K, Chiodini PL, Barnwell JW, Incardona S, Perkins M, Bell D, McCarthy J, Cheng Q. 2010. A large proportion of P. falciparum isolates in the Amazon region of Peru lack pfhrp2 and pfhrp3: implications for malaria rapid diagnostic tests. PLoS One, 5, e8091. [PubMed]
- [6]Gehde N, Hinrichs C, Montilla I, Charpian S, Lingelbach K, Przyborski JM. 2009. Protein unfolding is an essential requirement for transport across the parasitophorous vacuolar membrane of Plasmodium falciparum, Molecular Microbiology, 71, 613–628. [PubMed]
- [7]Hiller NL, Bhattacharjee S, van Ooij C, Liolios K, Harrison T, Lopez-Estrano C, Haldar K. 2004. A host-targeting signal in virulence proteins reveals a secretome in malarial infection. Science, 306, 1934–1937. [PubMed]
- [8]Külzer S, Charnaud S, Dagan T, Riedel J, Mandal P, Pesce ER, Blatch GL, Crabb BS, Gilson PR, Przyborski JM. 2012. Plasmodium falciparum-encoded exported hsp70/hsp40 chaperone/co-chaperone complexes within the host erythrocyte. Cellular Microbiology, 14, 1784–1795. [PubMed]
- [9]Kulzer S, Rug M, Brinkmann K, Cannon P, Cowman A, Lingelbach K, Blatch GL, Maier AG, Przyborski JM. 2010. Parasite-encoded Hsp40 proteins define novel mobile structures in the cytosol of the P. falciparum-infected erythrocyte. Cellular Microbiology, 12, 1398–1420. [PubMed]
- [10]Lambros C, Vanderberg JP. 1979. Synchronization of Plasmodium falciparum erythrocytic stages in culture. Journal of Parasitology, 65, 418–420.
- [11]Le Roch KG, Johnson JR, Florens L, Zhou Y, Santrosyan A, Grainger M, Yan SF, Williamson KC, Holder AA, Carucci DJ, Yates JR 3rd, Winzeler EA. 2004. Global analysis of transcript and protein levels across the Plasmodium falciparum life cycle. Genome Research, 14, 2308–2318. [PubMed]
- [12]Marti M, Good RT, Rug M, Knuepfer E, Cowman AF. 2004. Targeting malaria virulence and remodelling proteins to the host erythrocyte. Science, 306, 1930–1933. [PubMed]
- [13]O’Farrell PH. 1975. High resolution two-dimensional electrophoresis of proteins. Journal of Biological Chemistry, 250, 4007–4021.
- [14]Shonhai A, Boshoff A, Blatch GL. 2007. The structural and functional diversity of Hsp70 proteins from Plasmodium falciparum, Protein Science, 16, 1803–1818.
- [15]Singh GP, Chandra BR, Bhattacharya A, Akhouri RR, Singh SK, Sharma A. 2004. Hyper-expansion of asparagines correlates with an abundance of proteins with prion-like domains in Plasmodium falciparum, Molecular and Biochemical Parasitology, 137, 307–319. [PubMed]
- [16]Tonkin CJ, van Dooren GG, Spurck TP, Struck NS, Good RT, Handman E, Cowman AF, McFadden GI. 2004. Localization of organellar proteins in Plasmodium falciparum using a novel set of transfection vectors and a new immunofluorescence fixation method. Molecular and Biochemical Parasitology, 137, 13–21. [PubMed]