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

SARS-CoV-2 peptide fragments selectively dysregulate specific immune cell populations via Gaussian curvature targeting

SARS-CoV-2肽片段通过高斯曲率靶向选择性地扰乱特定免疫细胞群。

Zhang, Yue; Silvestre-Roig, Carlos; Fu, Han; Alimohamadi, Haleh; Mandal, Taraknath; Chen, Jonathan W; Luo, Elizabeth Wei-Chia; Anda, Jaime de; Linard Matos, Anna Lívia; Richter, Mathis; Mennella, Anna; Lee, HongKyu; Chan, Liana C; Wang, Yingrui; Wang, Naixin; Wang, Hongyu; Wang, Xiaohan; Lee, Calvin K; Ghosh, Susmita; Matsui, Tsutomu; Weiss, Thomas M; Guo, Tiannan; Zhang, Maomao; Li, Dapeng; Wolfgang, Matthew C; Hagan, Robert S; Li, Melody M H; Gunzer, Matthias; Sickmann, Albert; Frasca, Loredana; Yeaman, Michael R; Lande, Roberto; Cui, Qiang; Soehnlein, Oliver; Wong, Gerard C L

Dynamin-like Proteins Combine Mechano-constriction and Membrane Remodeling to Enable Two-Step Mitochondrial Fission via a "Snap-through" Instability

动力蛋白样蛋白结合机械收缩和膜重塑,通过“瞬时”不稳定性实现线粒体两步分裂。

Alimohamadi, Haleh; Luo, Elizabeth Wei-Chia; Liu, Xiaoying; Iqbal, Wasi; Yang, Rena; Gupta, Shivam; Nolden, Kelsey A; Mandal, Taraknath; Hill, R Blake; Duan, Liting; Wong, Gerard C L

Comparing Multifunctional Viral and Eukaryotic Proteins for Generating Scission Necks in Membranes

比较病毒和真核生物多功能蛋白在膜上形成裂颈的能力

Alimohamadi, Haleh; Luo, Elizabeth Wei-Chia; Gupta, Shivam; de Anda, Jaime; Yang, Rena; Mandal, Taraknath; Wong, Gerard C L

SARS-CoV-2 spike fusion peptide trans interaction with phosphatidylserine lipid triggers membrane fusion for viral entry

SARS-CoV-2 刺突融合肽与磷脂酰丝氨酸脂质的反式相互作用引发膜融合,从而实现病毒进入

Puspangana Singh #, Purba Pahari #, Srija Mukherjee #, Sharmistha Karmakar, Markus Hoffmann, Taraknath Mandal, Dibyendu Kumar Das

Dynamins combine mechano-constriction and membrane remodeling to enable two-step mitochondrial fission via a 'snap-through' instability

动力蛋白结合了机械收缩和膜重塑,通过“瞬时”不稳定性实现线粒体两步分裂。

Alimohamadi, Haleh; Luo, Elizabeth Wei-Chia; Yang, Rena; Gupta, Shivam; Nolden, Kelsey A; Mandal, Taraknath; Blake Hill, R; Wong, Gerard C L

How Cell-Penetrating Peptides Behave Differently from Pore-Forming Peptides: Structure and Stability of Induced Transmembrane Pores

细胞穿透肽与成孔肽的行为差异:诱导跨膜孔的结构和稳定性

Alimohamadi, Haleh; de Anda, Jaime; Lee, Michelle W; Schmidt, Nathan W; Mandal, Taraknath; Wong, Gerard C L

Synaptotagmin-7 outperforms synaptotagmin-1 to promote the formation of large, stable fusion pores via robust membrane penetration

突触结合蛋白-7通过强大的膜穿透作用,促进形成大的、稳定的融合孔,其效果优于突触结合蛋白-1。

Kevin C Courtney ,Taraknath Mandal ,Nikunj Mehta ,Lanxi Wu ,Yueqi Li ,Debasis Das ,Qiang Cui ,Edwin R Chapman

Visible light mediated organocatalytic dehydrogenative aza-coupling of 1,3-diones using aryldiazonium salts

利用芳基重氮盐介导可见光催化1,3-二酮的有机催化脱氢氮杂偶联反应

Das, Ramanand; Kundu, Taraknath; Basumatary, Joneswar

How cell penetrating peptides behave differently from pore forming peptides: structure and stability of induced transmembrane pores

细胞穿透肽与成孔肽的行为差异:诱导跨膜孔的结构和稳定性

Alimohamadi, Haleh; de Anda, Jaime; Lee, Michelle W; Schmidt, Nathan W; Mandal, Taraknath; Wong, Gerard C L

The complexin C-terminal amphipathic helix stabilizes the fusion pore open state by sculpting membranes.

复合物 C 端两亲性螺旋通过塑造膜来稳定融合孔的开放状态

Courtney Kevin C, Wu Lanxi, Mandal Taraknath, Swift Mark, Zhang Zhao, Alaghemandi Mohammad, Wu Zhenyong, Bradberry Mazdak M, Deo Claire, Lavis Luke D, Volkmann Niels, Hanein Dorit, Cui Qiang, Bao Huan, Chapman Edwin R