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首页> 外文期刊>PLOS Neglected Tropical Diseases >Golgi-Located NTPDase1 of Leishmania major Is Required for Lipophosphoglycan Elongation and Normal Lesion Development whereas Secreted NTPDase2 Is Dispensable for Virulence
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Golgi-Located NTPDase1 of Leishmania major Is Required for Lipophosphoglycan Elongation and Normal Lesion Development whereas Secreted NTPDase2 Is Dispensable for Virulence

机译:高脂蛋白位于利什曼原虫的高尔基体NTPDase1是脂磷聚糖延长和正常病变发展所必需的,而分泌的NTPDase2对于毒力是必不可少的

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摘要

Parasitic protozoa, such as Leishmania species, are thought to express a number of surface and secreted nucleoside triphosphate diphosphohydrolases (NTPDases) which hydrolyze a broad range of nucleoside tri- and diphosphates. However, the functional significance of NTPDases in parasite virulence is poorly defined. The Leishmania major genome was found to contain two putative NTPDases, termed LmNTPDase1 and 2, with predicted NTPDase catalytic domains and either an N-terminal signal sequence and/or transmembrane domain, respectively. Expression of both proteins as C-terminal GFP fusion proteins revealed that LmNTPDase1 was exclusively targeted to the Golgi apparatus, while LmNTPDase2 was predominantly secreted. An L. major LmNTPDase1 null mutant displayed increased sensitivity to serum complement lysis and exhibited a lag in lesion development when infections in susceptible BALB/c mice were initiated with promastigotes, but not with the obligate intracellular amastigote stage. This phenotype is characteristic of L. major strains lacking lipophosphoglycan (LPG), the major surface glycoconjugate of promastigote stages. Biochemical studies showed that the L. major NTPDase1 null mutant synthesized normal levels of LPG that was structurally identical to wild type LPG, with the exception of having shorter phosphoglycan chains. These data suggest that the Golgi-localized NTPase1 is involved in regulating the normal sugar-nucleotide dependent elongation of LPG and assembly of protective surface glycocalyx. In contrast, deletion of the gene encoding LmNTPDase2 had no measurable impact on parasite virulence in BALB/c mice. These data suggest that the Leishmania major NTPDase enzymes have potentially important roles in the insect stage, but only play a transient or non-major role in pathogenesis in the mammalian host.
机译:寄生虫的原生动物,如利什曼原虫,被认为表达了许多表面和分泌的核苷三磷酸二磷酸水解酶(NTPDases),它们水解了广泛的核苷三磷酸和二磷酸。但是,NTPDases在寄生虫毒力中的功能意义尚不清楚。发现利什曼原虫主要基因组包含两个推定的NTPDase,分别称为LmNTPDase1和2,具有预测的NTPDase催化结构域和N端信号序列和/或跨膜结构域。两种蛋白均作为C端GFP融合蛋白表达表明LmNTPDase1仅靶向高尔基体,而LmNTPDase2主要是分泌的。当易感BALB / c小鼠的感染由前鞭毛体引起,但不是专性细胞内鞭毛体阶段时,L.NTP的主要LmNTPDase1无效突变体显示出对血清补体溶解的敏感性提高,并且在病变发展方面表现出滞后性。该表型是缺乏脂磷酸聚糖(LPG)的乳杆菌的主要菌株的特征,LPG是前鞭毛体阶段的主要表面糖缀合物。生化研究表明,主要的L. NTPDase1空突变体合成了正常水平的LPG,该结构与野生型LPG相同,只是具有较短的磷酸聚糖链。这些数据表明,高尔基体定位的NTPase1参与调节LPG的正常糖核苷酸依赖性延伸和保护性表面糖萼的组装。相反,缺失编码LmNTPDase2的基因对BALB / c小鼠的寄生虫毒力没有可测量的影响。这些数据表明利什曼原虫主要的NTPDase酶在昆虫阶段具有潜在的重要作用,但在哺乳动物宿主的发病机理中仅起暂时或非主要作用。

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