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

Neutrophil CD14 is a driver and a therapeutic target for deep vein thrombosis

中性粒细胞CD14是深静脉血栓形成的驱动因素和治疗靶点。

Pandey, Nilesh; Kaur, Harpreet; Mitra, Raktim; Chandaluri, Lakshmi; Shaaban, Nirvana; Martinez, Alexa; Kidder, Evan; Anand, Sumit Kumar; Butler, Megan E; Zhang, Xiaolu; Goswami, Dweipayan; Frausto, Louise; Kumar, Dhananjay; Pandit, Rajan; Das, Sandeep; Rohilla, Sumati; Mohajan, Suman; Male, Gurranna; Huque, Amdadul; Salem, Amr R; Magdy, Tarek; Gross, David S; Stokes, Karen Y; Orr, A Wayne; Tousif, Sultan; Yurdagul, Arif Jr; Rom, Oren; Dhanesha, Nirav

Transcriptional condensates and the nuclear pore complex regulate gene expression and 3D genome architecture in response to stress

转录凝聚体和核孔复合体在应激反应中调控基因表达和三维基因组结构。

Mohajan, Suman; Gross, David S

A critical role for Pol II CTD phosphorylation in heterochromatic gene activation

Pol II CTD 磷酸化在异染色质基因激活中起着关键作用

Kainth, Amoldeep S; Zhang, Hesheng; Gross, David S

Primordial super-enhancers: heat shock-induced chromatin organization in yeast

原始超级增强子:酵母中热休克诱导的染色质组织

Kainth, Amoldeep S; Chowdhary, Surabhi; Pincus, David; Gross, David S

Shugoshin 2-a new guardian for heat shock transcription

Shugoshin 2——热休克转录的新守护者

Kainth, Amoldeep S; Meduri, Rajyalakshmi; Pandit, Vickky; Rubio, Linda S; Gross, David S

Chromosome conformation capture that detects novel cis- and trans-interactions in budding yeast

染色体构象捕获技术可检测出芽酵母中新的顺式和反式相互作用

Chowdhary, Surabhi; Kainth, Amoldeep S; Gross, David S

Heat Shock Factor 1 Drives Intergenic Association of Its Target Gene Loci upon Heat Shock.

热休克因子 1 在热休克时驱动其靶基因位点的基因间关联

Chowdhary Surabhi, Kainth Amoldeep S, Pincus David, Gross David S

Hsf1 and Hsp70 constitute a two-component feedback loop that regulates the yeast heat shock response

Hsf1 和 Hsp70 构成一个双组分反馈回路,该回路调节酵母的热休克反应。

Krakowiak, Joanna; Zheng, Xu; Patel, Nikit; Feder, Zoë A; Anandhakumar, Jayamani; Valerius, Kendra; Gross, David S; Khalil, Ahmad S; Pincus, David

Erratum for Chowdhary et al., "Heat Shock Protein Genes Undergo Dynamic Alteration in Their Three-Dimensional Structure and Genome Organization in Response to Thermal Stress"

更正:Chowdhary 等人,“热休克蛋白基因在应对热应激时发生三维结构和基因组组织的动态改变”

Chowdhary, Surabhi; Kainth, Amoldeep S; Gross, David S

SAGA and Rpd3 chromatin modification complexes dynamically regulate heat shock gene structure and expression

SAGA和Rpd3染色质修饰复合物动态调控热休克基因的结构和表达

Kremer, Selena B; Gross, David S