Opsonization modulates Rac-1 activation during cell entry by Leishmania amazonensis

被引:30
作者
Morehead, J
Coppens, I
Andrews, NW
机构
[1] Yale Univ, Sch Med, Sect Microbial Pathogenesis, New Haven, CT 06536 USA
[2] Yale Univ, Sch Med, Dept Internal Med, Infect Dis Sect, New Haven, CT 06520 USA
关键词
D O I
10.1128/IAI.70.8.4571-4580.2002
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Lesions caused by Leishmania amazonensis normally heal, but relapses occur due to parasite persistence in host tissues. It has been proposed that infection of fibroblasts plays an important role in this process by providing the parasites with a safe haven in which to replicate. However, most previous studies have focused on the entry of Leishmania into macrophages, a process mediated by serum opsonins. To gain insight into a possible role of nonopsonic entry in the intracellular persistence of amastigotes, we examined the invasion of Chinese hamster ovary (CHO) cells. Amastigotes entered CHO cells by a cytochalasin D, genistein, wortmannin, and 2,3-butanedione monoxime-sensitive pathway and replicated within phagolysosomes. However, unlike most phagocytic processes described to date, amastigote internalization in CHO cells involved activation of the GTPases Rho and Cdc42 but not Rac-1. When uptake was mediated by fibronectin or when amastigotes were opsonized with immunoglobulin G and internalized by Fc receptor-expressing CHO cells, Rac-1 activation was restored and found to be required for parasite internalization. Given the essential role of Rac in assembly of the respiratory burst oxidase, invasion through this nonopsonic, Rac-1-independent pathway may play a central role in the intracellular survival of Leishmania in immune hosts.
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页码:4571 / 4580
页数:10
相关论文
共 60 条
  • [1] ACTIVATION OF NADPH OXIDASE INVOLVES THE DISSOCIATION OF P21(RAC) FROM ITS INHIBITORY GDP/GTP EXCHANGE PROTEIN (RHOGDI) FOLLOWED BY ITS TRANSLOCATION TO THE PLASMA-MEMBRANE[J]. ABO, A;WEBB, MR;GROGAN, A;SEGAL, AW. BIOCHEMICAL JOURNAL, 1994
  • [2] Alexander J, 1999, J CELL SCI, V112, P2993
  • [3] ANDRADE ZA, 1984, AM J PATHOL, V114, P137
  • [4] The biogenesis and properties of the parasitophorous vacuoles that harbour Leishmania in murine macrophages[J]. Antoine, JC;Prina, E;Lang, T;Courret, N. TRENDS IN MICROBIOLOGY, 1998(10)
  • [5] Continuity between wound macrophage and fibroblast phenotype: analysis of wound fibroblast phagocytosis[J]. Arlein, WJ;Shearer, JD;Caldwell, MD. AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 1998(04)
  • [6] IDENTIFICATION OF A MOUSE P21(CDC42/RAC) ACTIVATED KINASE[J]. BAGRODIA, S;TAYLOR, SJ;CREASY, CL;CHERNOFF, J;CERIONE, RA. JOURNAL OF BIOLOGICAL CHEMISTRY, 1995(39)
  • [7] A novel regulator of p21-activated kinases[J]. Bagrodia, S;Taylor, SJ;Jordon, KA;Van Aelst, L;Cerione, RA. JOURNAL OF BIOLOGICAL CHEMISTRY, 1998(37)
  • [8] The role of interleukin (IL)-10 in the persistence of Leishmania major in the skin after healing and the therapeutic potential of anti-IL-10 receptor antibody for sterile cure[J]. Belkaid, Y;Hoffmann, KF;Mendez, S;Kamhawi, S;Udey, MC;Wynn, TA;Sacks, DL. JOURNAL OF EXPERIMENTAL MEDICINE, 2001(10)
  • [9] Fibroblasts as host cells in latent leishmaniosis[J]. Bogdan, C;Donhauser, N;Döring, R;Röllinghoff, M;Diefenbach, A;Rittig, MG. JOURNAL OF EXPERIMENTAL MEDICINE, 2000(12)
  • [10] Identification of two distinct mechanisms of phagocytosis controlled by different Rho GTPases[J]. Caron, E;Hall, A. SCIENCE, 1998(5394)