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

Triglyceride lipase PNPLA2-independent suppression of c-MYC signaling by the metabolic coactivator ABHD5 in prostate cancer

在前列腺癌中,代谢共激活因子ABHD5通过不依赖于甘油三酯脂肪酶PNPLA2的方式抑制c-MYC信号传导。

Lotvola, Aaron; Chen, Guohua; Zhou, Guoli; Granneman, James G; Wang, Jian

Integrative structural analysis of NF45-NF90 heterodimers reveals architectural rearrangements and oligomerization on binding dsRNA

NF45-NF90异二聚体的整合结构分析揭示了其与双链RNA结合后发生的结构重排和寡聚化。

Winterbourne, Sophie; Jayachandran, Uma; Zou, Juan; Rappsilber, Juri; Granneman, Sander; Cook, Atlanta G

A transcription termination mechanism for maintaining homogeneous protein expression

维持均一蛋白质表达的转录终止机制

Esteban-Serna, Sofia; Widén, Tove; Gwynne, Mags; Farquhar, Iseabail; Duchen, Michael R; Swain, Peter S; Granneman, Sander

Spatial Transcriptomics of Adipose Tissue: Technologies, Applications, and Challenges

脂肪组织空间转录组学:技术、应用和挑战

Keesling, Ashley R; Rondini, Elizabeth A; Granneman, James G

An Hfq-dependent post-transcriptional mechanism fine tunes RecB expression in Escherichia coli

大肠杆菌中一种依赖于 Hfq 的转录后机制可精细调控 RecB 的表达

Kalita, Irina; Iosub, Ira Alexandra; McLaren, Lorna; Goossens, Louise; Granneman, Sander; El Karoui, Meriem

Lipid droplet targeting of the lipase coactivator ABHD5 and the fatty liver disease-causing variant PNPLA3 I148M is required to promote liver steatosis.

脂肪酶共激活因子 ABHD5 和导致脂肪肝疾病的变异体 PNPLA3 I148M 靶向脂滴是促进肝脏脂肪变性的必要条件

Teskey Grace, Tiwari Nivedita, Butcko Andrew J, Kumar Amit, Yadav Anuradha, Huang Yu-Ming M, Kelly Christopher V, Granneman James G, Perfield James W, Mottillo Emilio P

Unraveling the Molecular Mechanisms of ABHD5 Membrane Targeting

揭示ABHD5膜靶向的分子机制

Kumar, Amit; Sanders, Matthew; Zhang, Huamei; Zhou, Li; Parveen, Shahnaz; Kelly, Christopher V; Granneman, James G; Huang, Yu-Ming M

Structural basis of ribosomal 30S subunit degradation by RNase R

核糖体 30S 亚基被 RNase R 降解的结构基础

Lyudmila Dimitrova-Paternoga, Sergo Kasvandik, Bertrand Beckert, Sander Granneman, Tanel Tenson, Daniel N Wilson, Helge Paternoga

TM4SF19-mediated control of lysosomal activity in macrophages contributes to obesity-induced inflammation and metabolic dysfunction

TM4SF19介导的巨噬细胞溶酶体活性调控导致肥胖引起的炎症和代谢功能障碍。

Cheoljun Choi # ,Yujin L Jeong # ,Koung-Min Park # ,Minji Kim ,Sangseob Kim ,Honghyun Jo ,Sumin Lee ,Heeseong Kim ,Garam Choi ,Yoon Ha Choi ,Je Kyung Seong ,Sik Namgoong ,Yeonseok Chung ,Young-Suk Jung ,James G Granneman ,Young-Min Hyun ,Jong Kyoung Kim ,Yun-Hee Lee

The zinc-finger transcription factor Sfp1 imprints specific classes of mRNAs and links their synthesis to cytoplasmic decay

锌指转录因子 Sfp1 印记特定类别的 mRNA,并将其合成与细胞质衰变联系起来

Moran Kelbert #, Antonio Jordán-Pla #, Lola de Miguel-Jiménez #, José García-Martínez, Michael Selitrennik, Adi Guterman, Noa Henig, Sander Granneman, José E Pérez-Ortín, Sebastián Chávez, Mordechai Choder