Essential role of membrane-attack protein in malarial transmission to mosquito host

被引:125
作者
Kadota, K [1 ]
Ishino, T [1 ]
Matsuyama, T [1 ]
Chinzei, Y [1 ]
Yuda, M [1 ]
机构
[1] Mie Univ, Sch Med, Tsu, Mie 5140001, Japan
关键词
malaria; ookinete; host cell invasion; membrane rupture; membrane-attack complex and perforin-related proteins;
D O I
10.1073/pnas.0406187101
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
After ingestion of infected blood by a mosquito, malarial parasites are fertilized in the mosquito midgut and develop into motile ookinetes. These ookinetes invade epithelial cells by rupturing the cell membrane and migrate through the cytoplasm toward the basal lamina, on which they develop to oocysts. Here we report that a microneme protein with a membrane-attack complex and perforin (MACPF)-related domain, which we name membrane-attack ookinete protein (MAOP), is produced in the ookinete stage and plays an essential role in midgut invasion by the ookinete. Ookinetes with the MAOP gene disrupted completely lost infectivity to the midgut. After ingestion of blood infected with the disrupted parasite, the midgut epithelium remained intact, making a clear contrast with the damaged midgut epithelium invaded by wild-type ookinetes. Electron microscopic analysis showed that the disruptant ookinetes migrate to the gut epithelium and attach to the cell surface at the apical tip, but are unable to enter the cytoplasm by rupturing the cell membrane. These results indicate that the MAOP molecule acts on the plasma membrane of the host-cell-like mammalian MACPF family proteins that create pores in the membrane of target cells. Another previously identified MACPF-related molecule is produced in the liver-infective sporozoite and has a crucial role in traversing the liver sinusoidal cell boundary. The present finding, thus, suggests that conserved mechanisms for membrane rupture involving MACPF-related proteins are used in different host invasive stages of the malarial parasite, playing a key role in breaching biological barriers of host organs.
引用
收藏
页码:16310 / 16315
页数:6
相关论文
共 23 条
[1]   Complement-like protein TEP1 is a determinant of vectorial capacity in the malaria vector Anopheles gambiae [J].
Blandin, S ;
Shiao, SH ;
Moita, LF ;
Janse, CJ ;
Waters, AP ;
Kafatos, FC ;
Levashina, EA .
CELL, 2004, 116 (05) :661-670
[2]   Genome sequence and comparative analysis of the model rodent malaria parasite Plasmodium yoelii yoelii [J].
Carlton, JM ;
Angiuoli, SV ;
Suh, BB ;
Kooij, TW ;
Pertea, M ;
Silva, JC ;
Ermolaeva, MD ;
Allen, JE ;
Selengut, JD ;
Koo, HL ;
Peterson, JD ;
Pop, M ;
Kosack, DS ;
Shumway, MF ;
Bidwell, SL ;
Shallom, SJ ;
van Aken, SE ;
Riedmuller, SB ;
Feldblyum, TV ;
Cho, JK ;
Quackenbush, J ;
Sedegah, M ;
Shoaibi, A ;
Cummings, LM ;
Florens, L ;
Yates, JR ;
Raine, JD ;
Sinden, RE ;
Harris, MA ;
Cunningham, DA ;
Preiser, PR ;
Bergman, LW ;
Vaidya, AB ;
Van Lin, LH ;
Janse, CJ ;
Waters, AP ;
Smith, HO ;
White, OR ;
Salzberg, SL ;
Venter, JC ;
Fraser, CM ;
Hoffman, SL ;
Gardner, MJ ;
Carucci, DJ .
NATURE, 2002, 419 (6906) :512-519
[3]   ULTRASTRUCTURAL OBSERVATIONS OF HOST-CELL INVASION BY SPOROZOITES OF EIMERIA-PAPILLATA INVIVO [J].
CHOBOTAR, B ;
DANFORTH, HD ;
ENTZEROTH, R .
PARASITOLOGY RESEARCH, 1993, 79 (01) :15-23
[4]   SCANNING AND TRANSMISSION ELECTRON-MICROSCOPY OF HOST-CELL PATHOLOGY ASSOCIATED WITH PENETRATION BY EIMERIA-PAPILLATA SPOROZOITES [J].
DANFORTH, HD ;
ENTZEROTH, R ;
CHOBOTAR, B .
PARASITOLOGY RESEARCH, 1992, 78 (07) :570-573
[5]   Knockout of the rodent malaria parasite chitinase PbCHT1 reduces infectivity to mosquitoes [J].
Dessens, JT ;
Mendoza, J ;
Claudianos, C ;
Vinetz, JM ;
Khater, E ;
Hassard, S ;
Ranawaka, GR ;
Sinden, RE .
INFECTION AND IMMUNITY, 2001, 69 (06) :4041-4047
[6]   CTRP is essential for mosquito infection by malaria ookinetes [J].
Dessens, JT ;
Beetsma, AL ;
Dimopoulos, G ;
Wengelnik, K ;
Crisanti, A ;
Kafatos, FC ;
Sinden, RE .
EMBO JOURNAL, 1999, 18 (22) :6221-6227
[7]   SOAP, a novel malaria ookinete protein involved in mosquito midgut invasion and oocyst development [J].
Dessens, JT ;
Sidén-Kiamos, I ;
Mendoza, J ;
Mahairaki, V ;
Khater, E ;
Vlachou, D ;
Xu, XJ ;
Kafatos, FC ;
Louis, C ;
Dimopoulos, G ;
Sinden, RE .
MOLECULAR MICROBIOLOGY, 2003, 49 (02) :319-329
[8]   Genome sequence of the human malaria parasite Plasmodium falciparum [J].
Gardner, MJ ;
Hall, N ;
Fung, E ;
White, O ;
Berriman, M ;
Hyman, RW ;
Carlton, JM ;
Pain, A ;
Nelson, KE ;
Bowman, S ;
Paulsen, IT ;
James, K ;
Eisen, JA ;
Rutherford, K ;
Salzberg, SL ;
Craig, A ;
Kyes, S ;
Chan, MS ;
Nene, V ;
Shallom, SJ ;
Suh, B ;
Peterson, J ;
Angiuoli, S ;
Pertea, M ;
Allen, J ;
Selengut, J ;
Haft, D ;
Mather, MW ;
Vaidya, AB ;
Martin, DMA ;
Fairlamb, AH ;
Fraunholz, MJ ;
Roos, DS ;
Ralph, SA ;
McFadden, GI ;
Cummings, LM ;
Subramanian, GM ;
Mungall, C ;
Venter, JC ;
Carucci, DJ ;
Hoffman, SL ;
Newbold, C ;
Davis, RW ;
Fraser, CM ;
Barrell, B .
NATURE, 2002, 419 (6906) :498-511
[9]   Molecular interactions between Anopheles stephensi midgut cells and Plasmodium berghei:: the time bomb theory of ookinete invasion of mosquitoes [J].
Han, YS ;
Thompson, J ;
Kafatos, FC ;
Barillas-Mury, C .
EMBO JOURNAL, 2000, 19 (22) :6030-6040
[10]   Cell-passage activity is required for the malarial parasite to cross the liver sinusoidal cell layer [J].
Ishino, T ;
Yano, K ;
Chinzei, Y ;
Yuda, M .
PLOS BIOLOGY, 2004, 2 (01) :77-84