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

Targeting MEK5 impairs nonhomologous end-joining repair and sensitizes prostate cancer to DNA damaging agents

靶向MEK5会损害非同源末端连接修复,并使前列腺癌细胞对DNA损伤剂更加敏感。

Broustas, Constantinos G; Duval, Axel J; Chaudhary, Kunal R; Friedman, Richard A; Virk, Renu K; Lieberman, Howard B

Prostate cancer: unmet clinical needs and RAD9 as a candidate biomarker for patient management

前列腺癌:未满足的临床需求以及 RAD9 作为患者管理的候选生物标志物

Lieberman, Howard B; Rai, Alex J; Friedman, Richard A; Hopkins, Kevin M; Broustas, Constantinos G

p53 and RAD9, the DNA Damage Response, and Regulation of Transcription Networks

p53 和 RAD9、DNA 损伤反应以及转录网络调控

Lieberman, Howard B; Panigrahi, Sunil K; Hopkins, Kevin M; Wang, Li; Broustas, Constantinos G

DNA damage response genes and the development of cancer metastasis

DNA损伤反应基因与癌症转移的发展

Broustas, Constantinos G; Lieberman, Howard B

Contributions of Rad9 to tumorigenesis

Rad9对肿瘤发生的影响

Broustas, Constantinos G; Lieberman, Howard B

Combined haploinsufficiency and genetic control of the G2/M checkpoint in irradiated cells

辐射细胞中单倍体不足与G2/M检查点遗传调控的联合作用

Young, Erik F; Smilenov, Lubomir B; Lieberman, Howard B; Hall, Eric J

The role of RAD9 in tumorigenesis

RAD9在肿瘤发生中的作用

Lieberman, Howard B; Bernstock, Joshua D; Broustas, Constantinos G; Hopkins, Kevin M; Leloup, Corinne; Zhu, Aiping

Mouse Rad1 deletion enhances susceptibility for skin tumor development.

小鼠Rad1基因缺失会增加皮肤肿瘤的易感性

Han Lu, Hu Zhishang, Liu Yuheng, Wang Xiangyuan, Hopkins Kevin M, Lieberman Howard B, Hang Haiying

Mouse Rad9b is essential for embryonic development and promotes resistance to DNA damage

小鼠Rad9b对胚胎发育至关重要,并能促进对DNA损伤的抵抗。

Leloup, Corinne; Hopkins, Kevin M; Wang, Xiangyuan; Zhu, Aiping; Wolgemuth, Debra J; Lieberman, Howard B

Rad9 has a functional role in human prostate carcinogenesis

Rad9在人类前列腺癌发生过程中发挥功能性作用。

Zhu, Aiping; Zhang, Charles Xia; Lieberman, Howard B