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本文引用的文献

1
Dense-granule organelles of Toxoplasma gondii: their role in the host-parasite relationship.刚地弓形虫致密颗粒细胞器:它们在宿主 - 寄生虫关系中的作用
Parasitol Today. 1994 Aug;10(8):293-6. doi: 10.1016/0169-4758(94)90078-7.
2
Targeted disruption of the bradyzoite-specific gene BAG1 does not prevent tissue cyst formation in Toxoplasma gondii.对缓殖子特异性基因BAG1进行靶向破坏并不能阻止刚地弓形虫组织包囊的形成。
Mol Biochem Parasitol. 1998 May 1;92(2):291-301. doi: 10.1016/s0166-6851(97)00236-3.
3
Intracellular fate of vacuoles containing Toxoplasma gondii is determined at the time of formation and depends on the mechanism of entry.含有刚地弓形虫的液泡在形成时就决定了其细胞内命运,并且取决于进入机制。
J Immunol. 1997 Nov 1;159(9):4452-9.
4
Actin in the parasite Toxoplasma gondii is encoded by a single copy gene, ACT1 and exists primarily in a globular form.寄生虫弓形虫中的肌动蛋白由单拷贝基因ACT1编码,主要以球状形式存在。
Cell Motil Cytoskeleton. 1997;37(3):253-62. doi: 10.1002/(SICI)1097-0169(1997)37:3<253::AID-CM7>3.0.CO;2-7.
5
Sequential protein secretion from three distinct organelles of Toxoplasma gondii accompanies invasion of human fibroblasts.来自刚地弓形虫三个不同细胞器的蛋白质顺序分泌伴随着对人类成纤维细胞的侵袭。
Eur J Cell Biol. 1997 Jun;73(2):114-23.
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Bradyzoite-specific gene expression in Toxoplasma gondii requires minimal genomic elements.刚地弓形虫速殖子特异性基因表达所需的基因组元件极少。
Mol Biochem Parasitol. 1997 Mar;85(1):89-98. doi: 10.1016/s0166-6851(96)02814-9.
7
Acute virulence in mice is associated with markers on chromosome VIII in Toxoplasma gondii.小鼠的急性毒力与刚地弓形虫第八条染色体上的标记有关。
Infect Immun. 1996 Dec;64(12):5193-8. doi: 10.1128/iai.64.12.5193-5198.1996.
8
Characterization of human T cell clones specific for Toxoplasma gondii.针对刚地弓形虫的人T细胞克隆的特性分析
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9
Role of macrophage-derived cytokines in the induction and regulation of cell-mediated immunity to Toxoplasma gondii.巨噬细胞源性细胞因子在诱导和调节对刚地弓形虫细胞介导免疫中的作用。
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10
Cells and cytokines in resistance to Toxoplasma gondii.抵抗刚地弓形虫中的细胞与细胞因子
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对刚地弓形虫中GRA2基因座的靶向破坏会降低小鼠的急性毒力。

Targeted disruption of the GRA2 locus in Toxoplasma gondii decreases acute virulence in mice.

作者信息

Mercier C, Howe D K, Mordue D, Lingnau M, Sibley L D

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Infect Immun. 1998 Sep;66(9):4176-82. doi: 10.1128/IAI.66.9.4176-4182.1998.

DOI:10.1128/IAI.66.9.4176-4182.1998
PMID:9712765
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC108503/
Abstract

Following invasion into the host cell, the protozoan Toxoplasma gondii secretes a variety of proteins that modify the parasitophorous vacuole. Within the vacuole, the 28-kDa dense granule protein known as GRA2 is specifically targeted to the tubulovesicular network which forms connections with the vacuolar membrane. To investigate the importance of GRA2, we derived from strain RH a mutant T. gondii line in which GRA2 was disrupted by replacement with the marker Ble (selecting for phleomycin resistance). The Deltagra2 mutant invaded and grew normally in both fibroblasts and macrophages in vitro; however, it was less virulent during acute infection in mice. The survival rate of mice inoculated with Deltagra2 was significantly higher; some infected mice survived the acute infection, whereas all mice infected with the wild-type strain RH succumbed to early death. Chronic infection by Deltagra2 was detected by positive serology, immunohistochemical detection of parasites and cysts in the brain, and reisolation of parasites by bioassay at 6 weeks postinfection. Thus, absence of GRA2 partially attenuates the virulence of T. gondii during the acute phase of infection and allows for establishment of chronic infection by the otherwise highly virulent RH strain. These results establish that GRA2 plays an important role during in vivo infection and provide a potential model for examining acute pathogenesis by T. gondii.

摘要

侵入宿主细胞后,原生动物刚地弓形虫会分泌多种蛋白质来修饰寄生泡。在寄生泡内,一种名为GRA2的28 kDa致密颗粒蛋白会特异性地靶向与液泡膜形成连接的管状囊泡网络。为了研究GRA2的重要性,我们从RH株衍生出一种刚地弓形虫突变株系,其中GRA2被用于筛选博来霉素抗性的标记基因Ble取代而被破坏。Δgra2突变体在体外的成纤维细胞和巨噬细胞中均能正常侵入和生长;然而,在小鼠急性感染期间其毒力较低。接种Δgra2的小鼠存活率显著更高;一些感染小鼠在急性感染中存活下来,而所有感染野生型RH株的小鼠均过早死亡。在感染后6周通过阳性血清学、脑组织中寄生虫和包囊的免疫组织化学检测以及生物测定法重新分离寄生虫来检测Δgra2的慢性感染。因此,GRA2的缺失在感染急性期会部分减弱刚地弓形虫的毒力,并使原本高毒力的RH株能够建立慢性感染。这些结果表明GRA2在体内感染过程中起重要作用,并为研究刚地弓形虫的急性发病机制提供了一个潜在模型。