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

The esoteric roles of Bcl-2 family proteins in glucose homeostasis and cell survival

Bcl-2家族蛋白在葡萄糖稳态和细胞存活中的深奥作用

Pfeiffer, S; Prehn, J H M

Retraction: Acidotoxicity and acid-sensing ion channels contribute to motoneuron degeneration

撤稿:酸毒性和酸敏感离子通道导致运动神经元退化

Behan, Á T; Breen, B; Hogg, M; Woods, I; Coughlan, K; Mitchem, M; Prehn, J H M

From computational modelling of the intrinsic apoptosis pathway to a systems-based analysis of chemotherapy resistance: achievements, perspectives and challenges in systems medicine

从内在凋亡途径的计算建模到化疗耐药性的系统分析:系统医学的成就、展望与挑战

Würstle, M L; Zink, E; Prehn, J H M; Rehm, M

Latrepirdine is a potent activator of AMP-activated protein kinase and reduces neuronal excitability

拉特吡啶是AMP激活蛋白激酶的强效激活剂,可降低神经元兴奋性。

Weisová, P; Alvarez, S P; Kilbride, S M; Anilkumar, U; Baumann, B; Jordán, J; Bernas, T; Huber, H J; Düssmann, H; Prehn, J H M

Two-step activation of FOXO3 by AMPK generates a coherent feed-forward loop determining excitotoxic cell fate

AMPK 两步激活 FOXO3 形成一个连贯的前馈回路,决定兴奋性毒性细胞的命运。

Davila, D; Connolly, N M C; Bonner, H; Weisová, P; Dussmann, H; Concannon, C G; Huber, H J; Prehn, J H M

KCa2 channels activation prevents [Ca2+]i deregulation and reduces neuronal death following glutamate toxicity and cerebral ischemia

KCa2通道激活可防止[Ca2+]i失调,并减少谷氨酸毒性和脑缺血后的神经元死亡。

Dolga, A M; Terpolilli, N; Kepura, F; Nijholt, I M; Knaus, H-G; D'Orsi, B; Prehn, J H M; Eisel, U L M; Plant, T; Plesnila, N; Culmsee, C

BH3-only proteins BIM and PUMA in the regulation of survival and neuronal differentiation of newly generated cells in the adult mouse hippocampus

BH3结构域蛋白BIM和PUMA在成年小鼠海马体新生成细胞的存活和神经元分化调控中的作用

Bunk, E C; König, H-G; Bernas, T; Engel, T; Henshall, D C; Kirby, B P; Prehn, J H M

XIAP impairs Smac release from the mitochondria during apoptosis.

XIAP 会抑制细胞凋亡过程中 Smac 从线粒体释放

Flanagan L, Sebastià J, Tuffy L P, Spring A, Lichawska A, Devocelle M, Prehn J H M, Rehm M

Loss of p53 results in protracted electrographic seizures and development of an aggravated epileptic phenotype following status epilepticus.

p53 的缺失会导致持续性脑电图癫痫发作,并在癫痫持续状态后发展为加重的癫痫表型

Engel T, Tanaka K, Jimenez-Mateos E M, Caballero-Caballero A, Prehn J H M, Henshall D C

Guidelines for the use and interpretation of assays for monitoring cell death in higher eukaryotes

高等真核生物细胞死亡监测检测方法的使用和解释指南

Galluzzi, L; Aaronson, S A; Abrams, J; Alnemri, E S; Andrews, D W; Baehrecke, E H; Bazan, N G; Blagosklonny, M V; Blomgren, K; Borner, C; Bredesen, D E; Brenner, C; Castedo, M; Cidlowski, J A; Ciechanover, A; Cohen, G M; De Laurenzi, V; De Maria, R; Deshmukh, M; Dynlacht, B D; El-Deiry, W S; Flavell, R A; Fulda, S; Garrido, C; Golstein, P; Gougeon, M-L; Green, D R; Gronemeyer, H; Hajnóczky, G; Hardwick, J M; Hengartner, M O; Ichijo, H; Jäättelä, M; Kepp, O; Kimchi, A; Klionsky, D J; Knight, R A; Kornbluth, S; Kumar, S; Levine, B; Lipton, S A; Lugli, E; Madeo, F; Malomi, W; Marine, J-C W; Martin, S J; Medema, J P; Mehlen, P; Melino, G; Moll, U M; Morselli, E; Nagata, S; Nicholson, D W; Nicotera, P; Nuñez, G; Oren, M; Penninger, J; Pervaiz, S; Peter, M E; Piacentini, M; Prehn, J H M; Puthalakath, H; Rabinovich, G A; Rizzuto, R; Rodrigues, C M P; Rubinsztein, D C; Rudel, T; Scorrano, L; Simon, H-U; Steller, H; Tschopp, J; Tsujimoto, Y; Vandenabeele, P; Vitale, I; Vousden, K H; Youle, R J; Yuan, J; Zhivotovsky, B; Kroemer, G