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

Multiomic analysis of clonal development reveals new regulators of leukemic cell growth.

克隆发育的多组学分析揭示了白血病细胞生长的新调控因子。

Bonilla Gracia, Morris Alexander, Kundu Sharmistha, DuCasse Anthony, Kirkpatrick Grace, Milosevic Jelena, Jeffries Nathan E, Chetal Kashish, Yvanovich Emma E, Zhao Ting, Xia Jun, Barghout Rana, Scadden David, Mansour Michael K, Kingston Robert E, Sykes David B, Mercier Francois E, Sadreyev Ruslan I

Adeno-associated Virus-mediated Silencing of Sox4 Leads to Long-Term Amelioration of Liver Phenotypes in Mouse Models of Alagille Syndrome

腺相关病毒介导的Sox4基因沉默可长期改善阿拉吉勒综合征小鼠模型的肝脏表型

Fox, Duncan; Xie, Jun; Burwinkel, Jennifer L; Adams, Josh M; Chetal, Kashish; Keivandarian, Marzieh; Faingelernt, Yaniv; Subramanian, Sanjay; Lopez, Mario F; Peters, Anna L; Salomonis, Nathan; Zarrin-Khameh, Neda; Gao, Guangping; Huppert, Stacey S; Jafar-Nejad, Hamed

Splicing regulatory dynamics for precision analysis and treatment of heterogeneous leukemias

利用剪接调控动力学进行异质性白血病的精准分析和治疗

Venkatasubramanian, Meenakshi; Schwartz, Leya; Ramachandra, Nandini; Bennett, Joshua; Subramanian, Krithika R; Chen, Xiaoting; Gordon-Mitchell, Shanisha; Fromowitz, Ariel; Pradhan, Kith; Shechter, David; Sahu, Srabani; Heiser, Diane; Scherle, Peggy; Chetal, Kashish; Kulkarni, Aishwarya; Lee, Davy; Zhou, Jeff; Myers, Kasiani C; Tseng, Elizabeth; Weirauch, Matthew T; Grimes, H Leighton; Starczynowski, Daniel T; Verma, Amit; Salomonis, Nathan

Multi-omics approaches reveal that diffuse midline gliomas present altered DNA replication and are susceptible to replication stress therapy

多组学方法表明,弥漫性中线胶质瘤表现出 DNA 复制改变,且易受复制应激疗法的影响

Anastasia E Hains, Kashish Chetal, Tsunetoshi Nakatani, Joana G Marques, Andreas Ettinger, Carlos A O Biagi Junior, Adriana Gonzalez-Sandoval, Renjitha Pillai, Mariella G Filbin, Maria-Elena Torres-Padilla, Ruslan I Sadreyev, Capucine Van Rechem

Deferasirox, an iron chelator, impacts myeloid differentiation by modulating NF-kB activity via mitochondrial ROS

铁螯合剂地拉罗司通过线粒体活性氧调节NF-κB活性,从而影响髓系细胞分化。

Jeffries, Nathan E; Sadreyev, Daniel; Trull, Elizabeth C; Chetal, Kashish; Yvanovich, Emma E; Mansour, Michael K; Sadreyev, Ruslan I; Sykes, David B

Broad de-regulated U2AF1 splicing is prognostic and augments leukemic transformation via protein arginine methyltransferase activation

广泛失调的 U2AF1 剪接具有预后作用,并通过蛋白质精氨酸甲基转移酶激活增强白血病转化

Meenakshi Venkatasubramanian, Leya Schwartz, Nandini Ramachandra, Joshua Bennett, Krithika R Subramanian, Xiaoting Chen, Shanisha Gordon-Mitchell, Ariel Fromowitz, Kith Pradhan, David Shechter, Srabani Sahu, Diane Heiser, Peggy Scherle, Kashish Chetal, Aishwarya Kulkarni, Kasiani C Myers, Matthew T

Epigenetic balance ensures mechanistic control of MLL amplification and rearrangement

表观遗传平衡确保 MLL 扩增和重排的机械控制

Zach H Gray, Damayanti Chakraborty, Reuben R Duttweiler, Gulnaz D Alekbaeva, Sedona E Murphy, Kashish Chetal, Fei Ji, Benjamin I Ferman, Madison A Honer, Zhentian Wang, Cynthia Myers, Renhong Sun, H Ümit Kaniskan, Monika Maria Toma, Elena A Bondarenko, John N Santoro, Christopher Miranda, Megan E Di

ThPOK is a critical multifaceted regulator of myeloid lineage development

ThPOK是髓系发育的关键多方面调节因子

Jayati Basu # ,Andre Olsson ,Kyle Ferchen ,Elizaveta K Titerina ,Kashish Chetal ,Emmanuelle Nicolas ,Philip Czyzewicz ,Dmitry Levchenko ,Lu Ge ,Xiang Hua ,H Leighton Grimes ,Nathan Salomonis ,Dietmar J Kappes #

ThPOK is a critical multifaceted regulator of myeloid lineage development

ThPOK是髓系发育的关键多方面调节因子

Jayati Basu #,Andre Olsson ,Kyle Ferchen,Elizaveta K Titerina,Kashish Chetal,Emmanuelle Nicolas,Philip Czyzewicz,Dmitry Levchenko,Lu Ge,Xiang Hua,H Leighton Grimes ,Nathan Salomonis ,Dietmar J Kappes #

Stiffness Restricts the Stemness of the Intestinal Stem Cells and Skews Their Differentiation Toward Goblet Cells

僵硬性限制了肠道干细胞的干细胞性,并使其向杯状细胞分化

Shijie He, Peng Lei, Wenying Kang, Priscilla Cheung, Tao Xu, Miyeko Mana, Chan Young Park, Hongyan Wang, Shinya Imada, Jacquelyn O Russell, Jianxun Wang, Ruizhi Wang, Ziheng Zhou, Kashish Chetal, Eric Stas, Vidisha Mohad, Peter Bruun-Rasmussen, Ruslan I Sadreyev, Richard A Hodin, Yanhang Zhang, Davi