日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A drug repurposing approach reveals targetable epigenetic pathways in Plasmodium vivax hypnozoites.

药物再利用方法揭示了间日疟原虫休眠子中可靶向的表观遗传通路

Maher Steven P, Bakowski Malina A, Vantaux Amélie, Flannery Erika L, Andolina Chiara, Gupta Mohit, Antonova-Koch Yevgeniya, Argomaniz Magdalena, Cabrera-Mora Monica, Campo Brice, Chao Alexander T, Chatterjee Arnab K, Cheng Wayne T, Chuenchob Vorada, Cooper Caitlin A, Cottier Karissa, Galinski Mary R, Harupa-Chung Anke, Ji Hana, Joseph Sean B, Lenz Todd, Lonardi Stefano, Matheson Jessica, Mikolajczak Sebastian A, Moeller Timothy, Orban Agnes, Padín-Irizarry Vivian, Pan Kastin, Péneau Julie, Prudhomme Jacques, Roesch Camille, Ruberto Anthony, Sabnis Saniya S, Saney Celia L, Sattabongkot Jetsumon, Sereshki Saleh, Suriyakan Sangrawee, Ubalee Ratawan, Wang Yinsheng, Wasisakun Praphan, Yin Jiekai, Popovici Jean, McNamara Case W, Joyner Chester, Nosten François H, Witkowski Benoît, Le Roch Karine G, Kyle Dennis E

Identification of novel compounds with prophylactic activity against hypnozoites using a Plasmodium cynomolgi in vitro model

利用猴疟原虫体外模型鉴定具有预防休眠子活性的新型化合物

Zeeman, Anne-Marie; Vermaat, Lars; Castellote Alvaro, M Isabel; Van der Werff, Nicole M; Glas-Nieuwenhuis, Ivonne G; Harupa-Chung, Anke; Calderón, Félix; Gamo, Fransisco-Javier; Fernandez Alvaro, Elena; Kocken, Clemens H M

HaloPROTAC3 does not trigger the degradation of the halotagged parasitophorous vacuole membrane protein UIS4 during Plasmodium liver stage development.

HaloPROTAC3 在疟原虫肝期发育过程中不会引发带有 halotagged 标记的寄生虫空泡膜蛋白 UIS4 的降解

Lam Melanie, Probst Alexandra, Torres Laura, Lantigua Ashley A, Fishbaugher Matthew E, Kumar Jyothsna R, Saldivia Manuel, Torres Allison, Hegde Shreeya, Aleshnick Maya, Jennison Charlie, Roberson Sarah G H, Joyner Chester J, Vaughan Ashley M, Wilder Brandon K, Manneville Carole, Flannery Erika L, Marcellin David, Nyfeler Beat, Thiel Zacharias, Mikolajczak Sebastian A, Harupa Anke, Mitchell Gabriel

Correlative light-electron microscopy methods to characterize the ultrastructural features of the replicative and dormant liver stages of Plasmodium parasites

结合光电显微镜技术表征疟原虫复制期和休眠期肝细胞超微结构特征

Mitchell, Gabriel; Torres, Laura; Fishbaugher, Matthew E; Lam, Melanie; Chuenchob, Vorada; Zalpuri, Reena; Ramasubban, Shreya; Baxter, Caitlin N; Flannery, Erika L; Harupa, Anke; Mikolajczak, Sebastian A; Jorgens, Danielle M

A Drug Repurposing Approach Reveals Targetable Epigenetic Pathways in Plasmodium vivax Hypnozoites

药物重定位策略揭示间日疟原虫休眠子中可靶向的表观遗传通路

Maher, S P; Bakowski, M A; Vantaux, A; Flannery, E L; Andolina, C; Gupta, M; Antonova-Koch, Y; Argomaniz, M; Cabrera-Mora, M; Campo, B; Chao, A T; Chatterjee, A K; Cheng, W T; Chuenchob, E; Cooper, C A; Cottier, K; Galinski, M R; Harupa-Chung, A; Ji, H; Joseph, S B; Lenz, T; Lonardi, S; Matheson, J; Mikolajczak, S A; Moeller, T; Orban, A; Padín-Irizarry, V; Pan, K; Péneau, J; Prudhomme, J; Roesch, C; Ruberto, A A; Sabnis, S S; Saney, C L; Sattabongkot, J; Sereshki, S; Suriyakan, S; Ubalee, R; Wang, Y; Wasisakun, P; Yin, J; Popovici, J; McNamara, C W; Joyner, C J; Nosten, F; Witkowski, B; Le Roch, K G; Kyle, D E

The Micronemal Plasmodium Proteins P36 and P52 Act in Concert to Establish the Replication-Permissive Compartment Within Infected Hepatocytes

微粒体疟原虫蛋白P36和P52协同作用,在受感染的肝细胞内建立复制允许区室。

Arredondo, Silvia A; Swearingen, Kristian E; Martinson, Thomas; Steel, Ryan; Dankwa, Dorender A; Harupa, Anke; Camargo, Nelly; Betz, William; Vigdorovich, Vladimir; Oliver, Brian G; Kangwanrangsan, Niwat; Ishino, Tomoko; Sather, Noah; Mikolajczak, Sebastian; Vaughan, Ashley M; Torii, Motomi; Moritz, Robert L; Kappe, Stefan H I

Interrogating the Plasmodium Sporozoite Surface: Identification of Surface-Exposed Proteins and Demonstration of Glycosylation on CSP and TRAP by Mass Spectrometry-Based Proteomics

探究疟原虫子孢子表面:通过基于质谱的蛋白质组学鉴定表面暴露的蛋白质并证明 CSP 和 TRAP 上的糖基化

Kristian E Swearingen, Scott E Lindner, Lirong Shi, Melanie J Shears, Anke Harupa, Christine S Hopp, Ashley M Vaughan, Timothy A Springer, Robert L Moritz, Stefan H I Kappe, Photini Sinnis

SSP3 is a novel Plasmodium yoelii sporozoite surface protein with a role in gliding motility

SSP3 是一种新型的约氏疟原虫子孢子表面蛋白,在滑行运动中发挥作用。

Harupa, Anke; Sack, Brandon K; Lakshmanan, Viswanathan; Arang, Nadia; Douglass, Alyse N; Oliver, Brian G; Stuart, Andrew B; Sather, D Noah; Lindner, Scott E; Hybiske, Kevin; Torii, Motomi; Kappe, Stefan H I

Total and putative surface proteomics of malaria parasite salivary gland sporozoites

疟原虫唾液腺子孢子的总体和假定表面蛋白质组学

Scott E Lindner, Kristian E Swearingen, Anke Harupa, Ashley M Vaughan, Photini Sinnis, Robert L Moritz, Stefan H I Kappe

Quantitative bioluminescent imaging of pre-erythrocytic malaria parasite infection using luciferase-expressing Plasmodium yoelii

利用表达荧光素酶的约氏疟原虫进行红细胞前期疟原虫感染的定量生物发光成像

Miller, Jessica L; Murray, Sara; Vaughan, Ashley M; Harupa, Anke; Sack, Brandon; Baldwin, Michael; Crispe, Ian N; Kappe, Stefan H I