Genetic modification of the diarrhoeal pathogen Cryptosporidium parvum

被引:245
作者
Vinayak, Sumiti [1 ]
Pawlowic, Mattie C. [1 ]
Sateriale, Adam [1 ]
Brooks, Carrie F. [1 ]
Studstill, Caleb J. [1 ]
Bar-Peled, Yael [1 ]
Cipriano, Michael J. [1 ]
Striepen, Boris [1 ,2 ]
机构
[1] Univ Georgia, Ctr Trop & Emerging Global Dis, Paul D Coverdell Ctr, Athens, GA 30602 USA
[2] Univ Georgia, Dept Cellular Biol, Paul D Coverdell Ctr, Athens, GA 30602 USA
基金
美国国家卫生研究院;
关键词
RANDOMIZED CONTROLLED-TRIAL; PLASMODIUM-FALCIPARUM; ZAMBIAN CHILDREN; INFECTION; NITAZOXANIDE; ASSAY; TIME; MORTALITY; PARASITES; STRAINS;
D O I
10.1038/nature14651
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
Recent studies into the global causes of severe diarrhoea in young children have identified the protozoan parasite Cryptosporidium as the second most important diarrhoeal pathogen after rotavirus(1-3). Diarrhoeal disease is estimated to be responsible for 10.5% of overall child mortality(4). Cryptosporidium is also an opportunistic pathogen in the contexts of human immunodeficiency virus (HIV)-caused AIDS and organ transplantation(5,6). There is no vaccine and only a single approved drug that provides no benefit for those in gravest danger: malnourished children and immunocompromised patients(7,8). Cryptosporidiosisdrug and vaccine development is limited by the poor tractability of the parasite, which includes a lack of systems for continuous culture, facile animal models, and molecular genetic tools(3,9). Here we describe an experimental framework to genetically modify this important human pathogen. We established and optimized transfection of C. parvum sporozoites in tissue culture. To isolate stable transgenics we developed a mouse model that delivers sporozoites directly into the intestine, aCryptosporidium clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 system, and in vivo selection for aminoglycoside resistance. We derived reporter parasites suitable for in vitro and in vivo drug screening, and we evaluated the basis of drug susceptibility by gene knockout. We anticipate that the ability to genetically engineer this parasite will be transformative for Cryptosporidium research. Genetic reporters will provide quantitative correlates for disease, cure and protection, and the role of parasite genes in these processes is now open to rigorous investigation.
引用
收藏
页码:477 / U232
页数:11
相关论文
共 41 条
[1]   Complete genome sequence of the apicomplexan, Cryptosporidium parvum [J].
Abrahamsen, MS ;
Templeton, TJ ;
Enomoto, S ;
Abrahante, JE ;
Zhu, G ;
Lancto, CA ;
Deng, MQ ;
Liu, C ;
Widmer, G ;
Tzipori, S ;
Buck, GA ;
Xu, P ;
Bankier, AT ;
Dear, PH ;
Konfortov, BA ;
Spriggs, HF ;
Iyer, L ;
Anantharaman, V ;
Aravind, L ;
Kapur, V .
SCIENCE, 2004, 304 (5669) :441-445
[2]   Effect of nitazoxanide on morbidity and mortality in Zambian children with cryptosporidiosis: a randomised controlled trial [J].
Amadi, B ;
Mwiya, M ;
Musuku, J ;
Watuka, A ;
Sianongo, S ;
Ayoub, A ;
Kelly, P .
LANCET, 2002, 360 (9343) :1375-1380
[3]   High dose prolonged treatment with nitazoxanide is not effective for cryptosporidiosis in HIV positive Zambian children: a randomised controlled trial [J].
Amadi, Beatrice ;
Mwiya, Mwiya ;
Sianongo, Sandie ;
Payne, Lara ;
Watuka, Angela ;
Katubulushi, Max ;
Kelly, Paul .
BMC INFECTIOUS DISEASES, 2009, 9
[4]   Drug Repurposing Screen Reveals FDA-Approved Inhibitors of Human HMG-CoA Reductase and Isoprenoid Synthesis That Block Cryptosporidium parvum Growth [J].
Bessoff, Kovi ;
Sateriale, Adam ;
Lee, Kyungae ;
Huston, Christopher D. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2013, 57 (04) :1804-1814
[5]   The Toxoplasma Apicoplast Phosphate Translocator Links Cytosolic and Apicoplast Metabolism and Is Essential for Parasite Survival [J].
Brooks, Carrie F. ;
Johnsen, Hanne ;
van Dooren, Giel G. ;
Muthalagi, Mani ;
Lin, San San ;
Bohne, Wolfgang ;
Fischer, Karsten ;
Striepen, Boris .
CELL HOST & MICROBE, 2010, 7 (01) :62-73
[6]   Structural RNAs of known and unknown function identified in malaria parasites by comparative genomics and RNA analysis [J].
Chakrabarti, Kausik ;
Pearson, Michael ;
Grate, Leslie ;
Sterne-Weiler, Timothy ;
Deans, Jonathan ;
Donohue, John Paul ;
Ares, Manuel, Jr. .
RNA, 2007, 13 (11) :1923-1939
[7]   A review of the global burden, novel diagnostics, therapeutics, and vaccine targets for cryptosporidium [J].
Checkley, William ;
White, A. Clinton, Jr. ;
Jaganath, Devon ;
Arrowood, Michael J. ;
Chalmers, Rachel M. ;
Chen, Xian-Ming ;
Fayer, Ronald ;
Griffiths, Jeffrey K. ;
Guerrant, Richard L. ;
Hedstrom, Lizbeth ;
Huston, Christopher D. ;
Kotloff, Karen L. ;
Kang, Gagandeep ;
Mead, Jan R. ;
Miller, Mark ;
Petri, William A., Jr. ;
Priest, Jeffrey W. ;
Roos, David S. ;
Striepen, Boris ;
Thompson, R. C. Andrew ;
Ward, Honorine D. ;
Van Voorhis, Wesley A. ;
Xiao, Lihua ;
Zhu, Guan ;
Houpt, Eric R. .
LANCET INFECTIOUS DISEASES, 2015, 15 (01) :85-94
[8]   Multiplex Genome Engineering Using CRISPR/Cas Systems [J].
Cong, Le ;
Ran, F. Ann ;
Cox, David ;
Lin, Shuailiang ;
Barretto, Robert ;
Habib, Naomi ;
Hsu, Patrick D. ;
Wu, Xuebing ;
Jiang, Wenyan ;
Marraffini, Luciano A. ;
Zhang, Feng .
SCIENCE, 2013, 339 (6121) :819-823
[9]   STUDIES ON CRYOPRESERVATION OF CRYPTOSPORIDIUM-PARVUM [J].
FAYER, R ;
NERAD, T ;
RALL, W ;
LINDSAY, DS ;
BLAGBURN, BL .
JOURNAL OF PARASITOLOGY, 1991, 77 (03) :357-361
[10]   Efficient Gene Replacements in Toxoplasma gondii Strains Deficient for Nonhomologous End Joining [J].
Fox, Barbara A. ;
Ristuccia, Jessica G. ;
Gigley, Jason P. ;
Bzik, David J. .
EUKARYOTIC CELL, 2009, 8 (04) :520-529