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

On-Resin Assembly of Macrocyclic Inhibitors of Cryptococcus neoformans May1: A Pathway to Potent Antifungal Agents.

新型隐球菌 May1 大环抑制剂的树脂上组装:通往强效抗真菌剂的途径

Kryštůfek Robin, Verner Václav, Šácha Pavel, Hadzima Martin, Trajhan Filip, Starková Jana, Tloušt'ová Eva, Dvořáková Alexandra, Pecina Adam, Brynda Jiří, Chalupský Karel, Hájek Miroslav, Boucher Michael J, Majer Pavel, Řezáč Jan, Madhani Hiten D, Craik Charles S, Konvalinka Jan

Functional insight into cyclin-dependent kinase (CDK)7 via chemical inhibition of the priority fungal pathogen Cryptococcus neoformans

通过化学抑制优先真菌病原体新型隐球菌,深入了解细胞周期蛋白依赖性激酶 (CDK)7 的功能

Sethiya, Pooja; Desmarini, Desmarini; Bowring, Bethany Grace; Cesar, Kyle; Boucher, Michael J; Wei, Angela L; Madhani, Hiten D; Crossett, Ben; Connelly, Angela; Halliday, Catriona L; Chen, Sharon C-A; Lai, Joey; Wong, Koon Ho; Djordjevic, Julianne Teresa

CRISPR/Cas9-compatible plasmids enabling seven dominant genetic selection methods for the human fungal pathogen Cryptococcus neoformans

兼容 CRISPR/Cas9 的质粒可用于对人类真菌病原体新型隐球菌进行七种显性基因筛选。

Boucher, Michael J; Madhani, Hiten D

Near 100% efficient homology-dependent genome engineering in the human fungal pathogen Cryptococcus neoformans

人类真菌病原体新型隐球菌中同源依赖性基因组工程的效率接近100%

Nalley, Matthew J; Banerjee, Sanjita; Huang, Manning Y; Madhani, Hiten D

An auxin-inducible degron system for conditional mutation in the fungal meningitis pathogen Cryptococcus neoformans.

新型隐球菌中一种由生长素诱导的降解子系统,用于条件性突变

Huang Manning Y, Nalley Matthew J, Hecht Patrick C, Madhani Hiten D

Phenotypic landscape of a fungal meningitis pathogen reveals its unique biology.

真菌性脑膜炎病原体的表型图谱揭示了其独特的生物学特性

Boucher Michael J, Banerjee Sanjita, Joshi Meenakshi B, Wei Angela L, Huang Manning Y, Lei Susan, Ciranni Massimiliano, Condon Andrew, Langen Andreas, Goddard Thomas D, Caradonna Ippolito, Goranov Alexi I, Homer Christina M, Mortensen Yassaman, Petnic Sarah, Reilly Morgann C, Xiong Ying, Susa Katherine J, Pastore Vito Paolo, Zaro Balyn W, Madhani Hiten D

Secreted fungal virulence effector triggers allergic inflammation via TLR4

分泌型真菌毒力效应因子通过TLR4触发过敏性炎症

Dang, Eric V; Lei, Susan; Radkov, Atanas; Volk, Regan F; Zaro, Balyn W; Madhani, Hiten D

Unbelievable but True: Epigenetics and Chromatin in Fungi

难以置信但却是事实:真菌中的表观遗传学和染色质

Madhani, Hiten D

Model organism databases are in jeopardy

模式生物数据库岌岌可危

Bellen, Hugo J; Hubbard, E J A; Lehmann, Ruth; Madhani, Hiten D; Solnica-Krezel, Lila; Southard-Smith, E Michelle

ATP Hydrolysis by the SNF2 Domain of Dnmt5 Is Coupled to Both Specific Recognition and Modification of Hemimethylated DNA.

Dnmt5 的 SNF2 结构域水解 ATP 与半甲基化 DNA 的特异性识别和修饰均相关

Dumesic Phillip A, Stoddard Caitlin I, Catania Sandra, Narlikar Geeta J, Madhani Hiten D