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

Cat1 forms filament networks to degrade NAD(+) during the type III CRISPR-Cas antiviral response

Cat1形成丝状网络,在III型CRISPR-Cas抗病毒反应中降解NAD(+)

Baca, Christian F; Majumder, Puja; Hickling, James H; Patel, Dinshaw J; Marraffini, Luciano A

Cap1 forms a cyclic tetra-adenylate-induced membrane pore during the type III-A CRISPR-Cas immune response

在 III-A 型 CRISPR-Cas 免疫反应中,Cap1 形成环状四腺苷酸诱导的膜孔。

Majumder, Puja; Cahir, Clare W; Roberts, Cameron G; Patel, Dinshaw J; Marraffini, Luciano A

The CRISPR-associated adenosine deaminase Cad1 converts ATP to ITP to provide antiviral immunity.

CRISPR 相关腺苷脱氨酶 Cad1 将 ATP 转化为 ITP,从而提供抗病毒免疫力

Baca Christian F, Majumder Puja, Hickling James H, Ye Linzhi, Teplova Marianna, Brady Sean F, Patel Dinshaw J, Marraffini Luciano A

Topological analyses of the L-lysine exporter LysO reveal a critical role for a conserved pair of intramembrane solvent-exposed acidic residues

对L-赖氨酸输出蛋白LysO的拓扑分析揭示了一对保守的膜内溶剂暴露酸性残基的关键作用。

Dubey, Swati; Majumder, Puja; Penmatsa, Aravind; Sardesai, Abhijit A

Increasing protein stability by engineering the n → π* interaction at the β-turn

通过改造β转角处的n→π*相互作用来提高蛋白质稳定性

Khatri, Bhavesh; Majumder, Puja; Nagesh, Jayashree; Penmatsa, Aravind; Chatterjee, Jayanta

Transporters through the looking glass. An insight into the mechanisms of ion-coupled transport and methods that help reveal them

透过镜子看转运蛋白:深入了解离子偶联转运的机制及其揭示方法。

Majumder, Puja; Mallela, Aditya Kumar; Penmatsa, Aravind