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

Myosin VI Is Associated With the Endoplasmic Reticulum in Regions of Sertoli Cells Containing Tubulobulbar Complexes.

肌球蛋白 VI 与含有小管球状复合体的塞托利细胞区域的内质网相关

Tretjakov Samuel, Palia Prunveer, Vogl A Wayne

Videofluoroscopy of the aerodigestive tract in Phoca vitulina: reshaping perspectives on translational medicine

利用透视技术对欧洲海豹(Phoca vitulina)的呼吸消化道进行成像:重塑转化医学的视角

Skoretz, Stacey A; Adams, Arlo; Vogl, A Wayne; Raverty, Stephen; Haulena, Martin; Stahl, Hillary; Dawson, Camilla

Bi-directional gap junction-mediated soma-germline communication is essential for spermatogenesis

双向间隙连接介导的体细胞-生殖细胞通讯对精子发生至关重要

Smendziuk, Christopher M; Messenberg, Anat; Vogl, A Wayne; Tanentzapf, Guy

Prenatal ethanol exposure delays the onset of spermatogenesis in the rat

产前乙醇暴露会延迟大鼠精子发生的启动。

Lan, Ni; Vogl, A Wayne; Weinberg, Joanne

The deubiquitinase activity of the Salmonella pathogenicity island 2 effector, SseL, prevents accumulation of cellular lipid droplets

沙门氏菌致病岛2效应蛋白SseL的去泛素化酶活性可防止细胞脂滴的积累

Arena, Ellen T; Auweter, Sigrid D; Antunes, L Caetano M; Vogl, A Wayne; Han, Jun; Guttman, Julian A; Croxen, Matthew A; Menendez, Alfredo; Covey, Scott D; Borchers, Christoph H; Finlay, B Brett

The Caenorhabditis elegans paxillin orthologue, PXL-1, is required for pharyngeal muscle contraction and for viability

秀丽隐杆线虫的paxillin同源物PXL-1是咽部肌肉收缩和生存所必需的。

Warner, Adam; Qadota, Hiroshi; Benian, Guy M; Vogl, A Wayne; Moerman, Donald G

The intermediate filament network in cultured human keratinocytes is remarkably extensible and resilient

培养的人类角质形成细胞中的中间丝网络具有显著的延展性和弹性。

Fudge, Douglas; Russell, David; Beriault, Dan; Moore, Whitney; Lane, E Birgitte; Vogl, A Wayne

The CD34-related molecule podocalyxin is a potent inducer of microvillus formation

CD34相关分子足细胞糖蛋白是微绒毛形成的强效诱导剂

Nielsen, Julie S; Graves, Marcia L; Chelliah, Shierley; Vogl, A Wayne; Roskelley, Calvin D; McNagny, Kelly M

Evidence that tight junctions are disrupted due to intimate bacterial contact and not inflammation during attaching and effacing pathogen infection in vivo

体内证据表明,紧密连接的破坏是由于细菌的密切接触而非炎症,这是病原体黏附和侵蚀感染过程中造成的。

Guttman, Julian A; Samji, Fereshte N; Li, Yuling; Vogl, A Wayne; Finlay, B Brett