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

Schlafen 5 is an intracellular immune checkpoint and controls IFN responses in pancreatic ductal adenocarcinoma

Schlafen 5 是一种细胞内免疫检查点,可控制胰腺导管腺癌中的 IFN 反应。

Fischietti, Mariafausta; Zannikou, Markella; Beauchamp, Elspeth M; Saleiro, Diana; Baran, Aneta H; Hryhorysak, Briana N; Magaña, Jamie N Guillen; Fajardo, Emely Lopez; Blyth, Gavin T; Castro, Brandyn A; Miska, Jason M; Lee-Chang, Catalina; Patel, Priyam; Bartom, Elizabeth T; Kocherginsky, Masha; Eckerdt, Frank; Platanias, Leonidas C

Development of a SIN1 targeting inhibitor as a novel therapeutic approach for the treatment of malignancies

开发一种靶向SIN1的抑制剂作为治疗恶性肿瘤的新型治疗方法

Beauchamp, Elspeth M; Jain, Atul; Clutter, Matt; Nahotko, Dominik; Lopez Fajardo, Emely; Vagadia, Purav P; Dunne, Sara F; Mina, Alain; Fischietti, Mariafausta; Oku, Chidera V; Blyth, Gavin T; Mishra, Rama K; Karras, Elena; Radecki, Sara G; Lantz, Connor; Addepalli, Sidharth; Modi, Mirage; Zou, Lihua; Cho, Byoung-Kyu; Goo, Young Ah; Rossoff, Jenna; Fish, Eleanor N; Saleiro, Diana; Schiltz, Gary E; Platanias, Leonidas C

The ubiquitin ligase Triad1 influences myeloid leukemogenesis by regulating the integrated stress response

泛素连接酶Triad1通过调节整合应激反应影响髓系白血病的发生。

Wang, Hao; Suh, Francis; Fischietti, Mariafausta; Wray, Brian; Filip, Szymon K; Faull, Peter A; Hu, Liping; Huang, Weiqi; Liu, Bin; Platanias, Leonidas C; Eklund, Elizabeth A

Loss of Function Mouse Models Reveal a Novel Regulatory Function for ULK1 in Myeloproliferative Neoplasms

功能缺失小鼠模型揭示ULK1在骨髓增生性肿瘤中的新型调控功能

Diana Saleiro ,Jeremy Q Wen ,Markella Zannikou ,Brian Lee ,Ewa M Kosciuczuk ,Sarah D Nehlsen ,Adam Munshi ,Xintong Chen ,Chidera V Oku ,Briana Hryhorysak ,Jamie N Guillen Magaña ,Jorge Heneche ,Mariafausta Fischietti ,Liliana Ilut ,Sara H Small ,Anitria Cotton ,Trent Hall ,Monique A Payton ,Elspeth M Beauchamp ,Feng Yue ,Masha Kocherginsky ,Elizabeth T Bartom ,Ronald Hoffman ,John D Crispino ,Leonidas C Platanias

CNSC-53. SHARED REGULATION OF QUIESCENCE PATHWAYS BETWEEN NEURAL AND GLIOMA STEM CELLS REVEALS TGF-Β SIGNALLING AS A THERAPEUTIC TARGET IN GLIOBLASTOMA

CNSC-53. 神经干细胞和胶质瘤干细胞之间静止通路调控的共同性揭示了TGF-β信号通路是胶质母细胞瘤的治疗靶点

Song, Liankun; Nguyen, Vyvyan; Xu, Shan; Ho, Kelly Vy Tuong; Hoang, Bang H; Yu, Jianhua; Uchio, Edward; Zi, Xiaolin; Manz, Frederik; Haag, Daniel; Pfister, Stefan M; Kutscher, Lena; Kaur, Raminderjit; Buyanova, Marina; Nelson, Brandon; Shakya, Sajina; Jones, Jaden; Agarwal, Shivangi; Fischietti, Mariafausta; Bertin, Paul; Hubert, Christopher; Choudhury, Chandra; Friess, Dana; Singleton, Matthew; Brauer, Stephanie; Harris, Lachlan

B cell-based therapy produces antibodies that inhibit glioblastoma growth

基于B细胞的疗法可产生抑制胶质母细胞瘤生长的抗体

Si Wang ,Brandyn A Castro ,Joshua L Katz ,Victor Arrieta ,Hinda Najem ,Gustavo I Vazquez-Cervantes ,Hanxiao Wan ,Ian E Olson ,David Hou ,Mark Dapash ,Leah K Billingham ,Tzu-Yi Chia ,Chao Wei ,Aida Rashidi ,Leonidas C Platanias ,Kathleen McCortney ,Craig M Horbinski ,Roger Stupp ,Peng Zhang ,Atique U Ahmed ,Adam M Sonabend ,Amy B Heimberger ,Maciej S Lesniak ,Cécile Riviere-Cazaux ,Terry Burns ,Jason Miska ,Mariafausta Fischietti ,Catalina Lee-Chang

m6A RNA methylation regulates mitochondrial function

m6A RNA 甲基化调节线粒体功能

Michael Kahl, Zhaofa Xu, Saravanan Arumugam, Brittany Edens, Mariafausta Fischietti, Allen C Zhu, Leonidas C Platanias, Chuan He, Xiaoxi Zhuang, Yongchao C Ma

Targeting SLFN11-regulated pathways restores chemotherapy sensitivity in AML

靶向SLFN11调控通路可恢复急性髓系白血病(AML)的化疗敏感性。

Small, Sara H; Perez, Ricardo E; Beauchamp, Elspeth M; Baran, Aneta H; Willis, Stephen D; Fischietti, Mariafausta; Schieber, Michael; Kocherginsky, Masha; Saleiro, Diana; Platanias, Leonidas C

Targeting ULK1 Decreases IFNγ-Mediated Resistance to Immune Checkpoint Inhibitors

靶向 ULK1 可降低 IFNγ 介导的对免疫检查点抑制剂的耐药性

Sarah E Fenton, Markella Zannikou, Liliana Ilut, Mariafausta Fischietti, Chunni Ji, Chidera V Oku, Curt M Horvath, I Caroline Le Poole, Marcus Bosenberg, Elizabeth T Bartom, Masha Kocherginsky, Leonidas C Platanias, Diana Saleiro

Targeting CHAF1B Enhances IFN Activity against Myeloproliferative Neoplasm Cells

靶向 CHAF1B 可增强针对骨髓增生性肿瘤细胞的 IFN 活性

Diana Saleiro #, Ewa M Kosciuczuk #, Mariafausta Fischietti, Ricardo E Perez, G Sohae Yang, Frank Eckerdt, Elspeth M Beauchamp, Ye Hou, Qixuan Wang, Rona Singer Weinberg, Eleanor N Fish, Feng Yue, Ronald Hoffman, Leonidas C Platanias