Open Access. Powered by Scholars. Published by Universities.®

Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Transgenic Mosquitoes Expressing A Phospholipase A(2) Gene Have A Fitness Advantage When Fed Plasmodium Falciparum-Infected Blood, Ryan C. Smith, Christopher Kizito, Jason L. Rasgon, Marcelo Jacobs-Lorena Oct 2013

Transgenic Mosquitoes Expressing A Phospholipase A(2) Gene Have A Fitness Advantage When Fed Plasmodium Falciparum-Infected Blood, Ryan C. Smith, Christopher Kizito, Jason L. Rasgon, Marcelo Jacobs-Lorena

Ryan C. Smith

Genetically modified mosquitoes have been proposed as an alternative strategy to reduce the heavy burden of malaria. In recent years, several proof-of-principle experiments have been performed that validate the idea that mosquitoes can be genetically modified to become refractory to malaria parasite development. We have created two transgenic lines of Anophelesstephensi, a natural vector of Plasmodium falciparum, which constitutively secrete a catalytically inactive phospholipase A2 (mPLA2) into the midgut lumen to interfere with Plasmodium ookinete invasion. Our experiments show that both transgenic lines expressing mPLA2 significantly impair the development of rodent malaria parasites, but only one line impairs the development …


Enterobacter-Activated Mosquito Immune Responses To Plasmodium Involve Activation Of Srpn6 In Anopheles Stephensi, Ryan C. Smith, Abraham G. Eappen, Marcelo Jacobs-Lorena May 2013

Enterobacter-Activated Mosquito Immune Responses To Plasmodium Involve Activation Of Srpn6 In Anopheles Stephensi, Ryan C. Smith, Abraham G. Eappen, Marcelo Jacobs-Lorena

Ryan C. Smith

Successful development of Plasmodium in the mosquito is essential for the transmission of malaria. A major bottleneck in parasite numbers occurs during midgut invasion, partly as a consequence of the complex interactions between the endogenous microbiota and the mosquito immune response. We previously identified SRPN6 as an immune component which restricts Plasmodium berghei development in the mosquito. Here we demonstrate that SRPN6 is differentially activated by bacteria in Anopheles stephensi, but only when bacteria exposure occurs on the lumenal surface of the midgut epithelium. Our data indicate that AsSRPN6 is strongly induced following exposure to Enterobacter cloacae, a common component …