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

A brain-specific microRNA, miR-1000, regulates lipid homeostasis via neuropeptide-like precursor 1 in Drosophila melanogaster

在果蝇中,一种脑特异性microRNA miR-1000通过神经肽样前体1调控脂质稳态。

Verma, Pushpa; Gowda, Pruthvi; Danial, Nika N; Van Vactor, David

Flexible competency framework: A tool for optimizing life science training

灵活的能力框架:优化生命科学培训的工具

Li, Xiuqi; Patrnogić, Jelena; Van Vactor, David

MiR-92 Controls Synaptic Development Through Glial Vha55 Regulation

miR-92通过调控神经胶质细胞Vha55来控制突触发育。

Moe, Simon M; Taylor, Alicia; Robertson, Alan P; Van Vactor, David; McNeill, Elizabeth M

Interdisciplinarity at the nexus of biomedical science training: The R3 Center for Innovation in Science Education

生物医学科学培训中的跨学科性:R3科学教育创新中心

Ciubotariu, Ilinca I; Kobayashi, Tamaki; Neely, Crystal J; Tawia Hagan, Daniel Fiifi; Ewusi-Mensah, David; Van Vactor, David; Whipple, Elizabeth C; Camacho, Emma; Ghosh, Gautam; Lamb, Heather M; Owusu-Frimpong, Isaac; Alltop, James; Romano, Julia D; Kelly, Kristen; Rogers, Lindsay Smith; Morales, Lymari; Seibel, Matthew; Rao, Roshni; Bekka, Soumia; Mills, William T 4th; Casadevall, Arturo; Bosch, Gundula

A brain-specific microRNA, miR-1000, regulates lipid homeostasis via Neuropeptide-like precursor 1 in Drosophila melanogaster

在果蝇中,一种脑特异性microRNA miR-1000通过神经肽样前体1调控脂质稳态。

Verma, Pushpa; Gowda, Pruthvi; Danial, Nika N; Van Vactor, David

Regulation of miR-219 and its target RalGPS dictates acute synaptic plasticity at the Drosophila neuromuscular junction.

miR-219 及其靶标 RalGPS 的调控决定了果蝇神经肌肉接头处的急性突触可塑性。

Aavula Kumar, Heggeness Hansine, Yokokura Takakazu, Van Vactor David

cAMP/PKA signaling regulates TDP-43 aggregation and mislocalization.

cAMP/PKA信号通路调节TDP-43的聚集和错误定位

Ho Diana M, Shaban Muhammad, Mahmood Faisal, Ganguly Payel, Todeschini Leonardo, Van Vactor David, Artavanis-Tsakonas Spyros

Research culture in biomedicine: what we learned, and what we would like to do about it

生物医学研究文化:我们学到了什么,以及我们希望如何改进

McCray, Alexa T; Van Vactor, David; Gould, James; Li, Xiuqi; Patrnogić, Jelena; Shamu, Caroline; Walsh, Mary C

An altered extracellular matrix-integrin interface contributes to Huntington's disease-associated CNS dysfunction in glial and vascular cells

改变的细胞外基质-整合素界面导致亨廷顿氏病相关的神经胶质细胞和血管细胞中枢神经系统功能障碍

Sarah J Hernandez, Ryan G Lim, Tarik Onur, Mark A Dane, Rebecca Smith, Keona Wang, Grace En-Hway Jean, Andrea Reyes-Ortiz, Kaylyn Devlin, Ricardo Miramontes, Jie Wu, Malcolm Casale, David Kilburn, Laura M Heiser, James E Korkola, David Van Vactor, Juan Botas, Katherine L Thompson-Peer, Leslie M Thom

Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits

亨廷顿病 iPSC 和小鼠星形胶质细胞的单核转录组分析表明成熟和功能缺陷

Andrea M Reyes-Ortiz, Edsel M Abud, Mara S Burns, Jie Wu, Sarah J Hernandez, Nicolette McClure, Keona Q Wang, Corey J Schulz, Ricardo Miramontes, Alice Lau, Neethu Michael, Emily Miyoshi, David Van Vactor, John C Reidling, Mathew Blurton-Jones, Vivek Swarup, Wayne W Poon, Ryan G Lim, Leslie M Thomps