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Summary Literature (14)
Literature for DOID 2789: parasitic protozoa infectious disease


Xenbase Articles :
( Denotes literature images)
Validation of the hexose transporter of Plasmodium falciparum as a novel drug target., Joet T,Eckstein-Ludwig U,Morin C,Krishna S, Proc Natl Acad Sci U S A. June 24, 2003; 100(13):1091-6490.
Comparative characterization of hexose transporters of Plasmodium knowlesi, Plasmodium yoelii and Toxoplasma gondii highlights functional differences within the apicomplexan family., Joët T,Holterman L,Stedman TT,Kocken CH,Van Der Wel A,Thomas AW,Krishna S, Biochem J. December 15, 2002; 368(Pt 3):1470-8728.
A surface transporter family conveys the trypanosome differentiation signal., Dean S,Marchetti R,Kirk K,Matthews KR, Nature. May 14, 2009; 459(7244):0143-5221.
Alternative splicing of the Anopheles gambiae nicotinic acetylcholine receptor, Agamalphabeta9, generates both alpha and beta subunits., Jones AK,Buckingham SD,Brown LA,Sattelle DB, Invert Neurosci. November 1, 2009; 9(2):1439-1104.
A sodium channel mutation identified in Aedes aegypti selectively reduces cockroach sodium channel sensitivity to type I, but not type II pyrethroids., Hu Z,Du Y,Nomura Y,Dong K, Insect Biochem Mol Biol. January 1, 2011; 41(1):1879-0240.
Mechanism of inhibition of connexin channels by the quinine derivative N-benzylquininium., Rubinos C,Sánchez HA,Verselis VK,Srinivas M, J Gen Physiol. January 1, 2012; 139(1):1540-7748.
Stereoselective inhibition of serotonin transporters by antimalarial compounds., Beckman ML,Pramod AB,Perley D,Henry LK, Neurochem Int. July 1, 2014; 73:1872-9754.
5-Diphosphoinositol pentakisphosphate (5-IP7) regulates phosphate release from acidocalcisomes and yeast vacuoles., Potapenko E,Cordeiro CD,Huang G,Storey M,Wittwer C,Dutta AK,Jessen HJ,Starai VJ,Docampo R, J Biol Chem. December 7, 2018; 293(49):1083-351X.
Injection of mRNA isolated from trophozoites of Giardia intestinalis induces expression of three types of chloride currents in Xenopus laevis oocytes., Ponce A,Ogazon Del Toro A,Jimenez L,Eligio-Garcia L,Jimenez-Cardoso E, Physiol Rep. June 1, 2019; 7(11):2051-817X.
The transportome of the malaria parasite., Martin RE, Biol Rev Camb Philos Soc. April 1, 2020; 95(2):1469-185X.
The natural function of the malaria parasite's chloroquine resistance transporter., Shafik SH,Cobbold SA,Barkat K,Richards SN,Lancaster NS,Llinás M,Hogg SJ,Summers RL,McConville MJ,Martin RE, Nat Commun. August 6, 2020; 11(1):2041-1723.
Synthesis and biological evaluation of benzhydryl-based antiplasmodial agents possessing Plasmodium falciparum chloroquine resistance transporter (PfCRT) inhibitory activity., Relitti N,Federico S,Pozzetti L,Butini S,Lamponi S,Taramelli D,D'Alessandro S,Martin RE,Shafik SH,Summers RL,Babij SK,Habluetzel A,Tapanelli S,Caldelari R,Gemma S,Campiani G, Eur J Med Chem. April 5, 2021; 215:1768-3254.
Coordinated action of multiple transporters in the acquisition of essential cationic amino acids by the intracellular parasite Toxoplasma gondii., Fairweather SJ,Rajendran E,Blume M,Javed K,Steinhöfel B,McConville MJ,Kirk K,Bröer S,van Dooren GG, PLoS Pathog. August 25, 2021; 17(8):1553-7374.
Functional analysis reveals ionotropic GABA receptor subunit RDL is a target site of ivermectin and fluralaner in the yellow fever mosquito, Aedes aegypti., Wang Q,Wang H,Zhang Y,Zhang Y,Chen J,Upadhyay A,Bhowmick B,Hang J,Wu S,Liao C,Han Q, Pest Manag Sci. October 1, 2022; 78(10):1526-4998.