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The role of cystatins in tick physiology and blood feeding

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    0379758 - BC 2013 RIV DE eng J - Journal Article
    Schwarz, Alexandra - Valdés, James J. - Kotsyfakis, Michalis
    The role of cystatins in tick physiology and blood feeding.
    Ticks and Tick-borne Diseases. Roč. 3, č. 3 (2012), s. 117-127. ISSN 1877-959X. E-ISSN 1877-9603
    R&D Projects: GA ČR GAP502/12/2409
    Institutional research plan: CEZ:AV0Z60220518
    Keywords : Cystatin * Cysteine proteases * Tick * Immunomodulators * Blood feeding * Midgut * Physiology
    Subject RIV: EC - Immunology
    Impact factor: 2.353, year: 2012

    Ticks, as obligate hematophagous ectoparasites, impact greatly on animal and human health because they transmit various pathogens worldwide. Over the last decade, several cystatins from different hard and soft ticks were identified and biochemically analyzed for their role in the physiology and blood feeding lifestyle of ticks. All these cystatins are potent inhibitors of papain-like cysteine proteases, but not of legumain. Tick cystatins were either detected in the salivary glands and/or the midgut, key tick organs responsible for blood digestion and the expression of pharmacologically potent salivary proteins for blood feeding. For example, the transcription of two cystatins named HlSC-1 and Sialostatin L2 was highly upregulated in these tick tissues during feeding. Vaccinating hosts against Sialostatin L2 and Om-cystatin 2 as well as silencing of a cystatin gene from Amblyomma americanum significantly inhibited the feeding ability of ticks. Additionally, Om-cystatin 2 and Sialostatin L possessed strong host immunosuppressive properties by inhibiting dendritic cell maturation due to their interaction with cathepsin S. These two cystatins, together with Sialostatin L2 are the first tick cystatins with resolved three-dimensional structure. Sialostatin L, furthermore, showed preventive properties against autoimmune diseases. In the case of the cystatin Hlcyst-2, experimental evidence showed its role in tick innate immunity, since increased Hlcyst-2 transcript levels were detected in Babesia gibsoni-infected larval ticks and the protein inhibited Babesia growth. Other cystatins, such as Hlcyst-1 or Om-cystatin 2 are assumed to be involved in regulating blood digestion. Only for Bmcystatin was a role in tick embryogenesis suggested. Finally, all the biochemically analyzed tick cystatins are powerful protease inhibitors, and some may be novel antigens for developing anti-tick vaccines and drugs of medical importance due to their stringent target specificity.
    Permanent Link: http://hdl.handle.net/11104/0210642

     
     
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