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

Correction: Kanyo et al. Kinetic Analysis of SARS-CoV-2 S1-Integrin Binding Using Live-Cell, Label-Free Optical Biosensing. Biosensors 2025, 15, 534

更正:Kanyo 等人,《利用活细胞无标记光学生物传感技术对 SARS-CoV-2 S1-整合素结合进行动力学分析》,Biosensors 2025, 15, 534

Kanyo, Nicolett; Borbely, Krisztina; Peter, Beatrix; Kovacs, Kinga Dora; Balogh, Anna; Magyaródi, Beatrix; Kurunczi, Sandor; Szekacs, Inna; Horvath, Robert

Adenovirus E4ORF1 activates isoform-specific phosphatidylinositol 3-kinase signaling in human endothelial cells.

腺病毒 E4ORF1 激活人类内皮细胞中亚型特异性磷脂酰肌醇 3-激酶信号传导。

Geng Fuqiang, Kobayashi Mariko, Lin Yang, Gomez-Salinero Jesus Maria, Romano Dominick, Kanyo Jean, Geng Jennifer, Liu Ying, Ginsberg Michael, Shieh Jae-Hung, Chen Kevin, Lam TuKiet T, Rafii Arash, Rabbany Sina Y, Lis Raphaël, Rafii Shahin

Myelin-axon interface vulnerability in Alzheimer's disease revealed by subcellular proteomics and imaging of human and mouse brain

通过亚细胞蛋白质组学和人鼠脑成像技术揭示阿尔茨海默病中髓鞘-轴突界面脆弱性

Yifei Cai ,Iguaracy Pinheiro-de-Sousa # ,Mykhaylo Slobodyanyuk # ,Fuyi Chen # ,Tram Huynh ,Jean Kanyo ,Peiyang Tang ,Lukas A Fuentes ,Amber Braker ,Rachel Welch ,Anita Huttner ,Lei Tong ,Peng Yuan ,TuKiet T Lam ,Evangelia Petsalaki ,Jüri Reimand ,Angus C Nairn ,Jaime Grutzendler

Subcellular proteomics and iPSC modeling uncover reversible mechanisms of axonal pathology in Alzheimer's disease.

亚细胞蛋白质组学和iPSC建模揭示了阿尔茨海默病中轴突病理的可逆机制

Cai Yifei, Kanyo Jean, Wilson Rashaun, Bathla Shveta, Cardozo Pablo Leal, Tong Lei, Qin Shanshan, Fuentes Lukas A, Pinheiro-de-Sousa Iguaracy, Huynh Tram, Sun Liyuan, Mansuri Mohammad Shahid, Tian Zichen, Gan Hao-Ran, Braker Amber, Trinh Hoang Kim, Huttner Anita, Lam TuKiet T, Petsalaki Evangelia, Brennand Kristen J, Nairn Angus C, Grutzendler Jaime

Machine Learning Analysis of the Orbitofrontal Cortex Transcriptome of Human Opioid Users Identifies Shisa7 as a Translational Target Relevant for Heroin Seeking Leveraging a Male Rat Model

利用机器学习分析人类阿片类药物使用者眶额皮质转录组,发现 Shisa7 是一个与海洛因渴求相关的转化靶点(以雄性大鼠模型为模型)。

Ellis, Randall J; Ferland, Jacqueline-Marie N; Rahman, Tanni; Landry, Joseph L; Callens, James E; Pandey, Gaurav; Lam, TuKiet; Kanyo, Jean; Nairn, Angus C; Dracheva, Stella; Hurd, Yasmin L

Ryanodine receptor 2-mediated calcium leak is associated with increased glyoxalase I in the aging brain.

雷诺定受体 2 介导的钙泄漏与衰老大脑中乙二醛酶 I 的增加有关。

Woo Elizabeth, Datta Dibyadeep, Bathla Shveta, Beatty Hannah, Caglayan Pinar, Albizu Ashley Kristant, Lam TuKiet T, Kanyo Jean, Joyce Mary Kate, Leslie Shannon, Uchendu Stacy, DeLong Jonathan, Guan Qinyue Stacy, Li Jiaxin, Abramson Efrat, Herman Alison L, Cooper Dawson, Licznerski Pawel, Horvath Tamas L, Jonas Elizabeth A, Nairn Angus C, Arnsten Amy Ft, Sansing Lauren H

Kinetic Analysis of SARS-CoV-2 S1-Integrin Binding Using Live-Cell, Label-Free Optical Biosensing.

利用活细胞、无标记光学生物传感技术对SARS-CoV-2 S1-整合素结合进行动力学分析

Kanyo Nicolett, Borbely Krisztina, Peter Beatrix, Kovacs Kinga Dora, Balogh Anna, Magyaródi Beatrix, Kurunczi Sandor, Szekacs Inna, Horvath Robert

Phosphorylation of the nuclear poly(A) binding protein (PABPN1) during mitosis protects mRNA from hyperadenylation and maintains transcriptome dynamics

有丝分裂期间核聚腺苷酸结合蛋白 (PABPN1) 的磷酸化可保护 mRNA 免于过度腺苷酸化并维持转录组动力学

Jackson M Gordon, David V Phizicky, Leonard Schärfen, Courtney L Brown, Dahyana Arias Escayola, Jean Kanyo, TuKiet T Lam, Matthew D Simon, Karla M Neugebauer

Dual regulation of SLC25A39 by AFG3L2 and iron controls mitochondrial glutathione homeostasis

AFG3L2 和铁对 SLC25A39 的双重调节控制线粒体谷胱甘肽稳态

Xiaojian Shi, Marisa DeCiucis, Kariona A Grabinska, Jean Kanyo, Adam Liu, Tukiet T Lam, Hongying Shen

Cellular stiffness sensing through talin 1 in tissue mechanical homeostasis

组织力学稳态中通过 talin 1 感知细胞刚度

Manasa Chanduri,Abhishek Kumar,Dar Weiss,Nir Emuna,Igor Barsukov,Miusi Shi,Keiichiro Tanaka,Xinzhe Wang,Amit Datye,Jean Kanyo,Florine Collin,TuKiet Lam,Udo D Schwarz,Suxia Bai,Timothy Nottoli,Benjamin T Goult,Jay D Humphrey,Martin A Schwartz      0