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1.
15-Deoxy-{'ДЕЛЬТА'12,14}-prostaglandin J[2] (15d-PGJ[2]) induces cell death through caspase-independent mechanism in A172 human glioma cells // Neurochem. Res., 2006. Vol. 31, N 10.-С.1247-1254

2.
Activation of G proteins bidirectionally affects apoptosis of cultured cerebellar granule neurons // J. Neurochem., 1995. Vol. 65, N 6.-С.2425-2431

3.
Engisch Kathrin L. Activity-dependent modulation of the Ca{2+}-exocytosis relationship in bovine adrenal chromaffin cells // J. Gen. Physiol., 1998. Vol. 112, N 1.-С.42a

4.
Antimicrobial nodule-specific cysteine-rich peptides induce membrane depolarization-associated changes in the transcriptome of Sinorhizobium meliloti // Appl. and Environ. Microbiol., 2013. Vol. 79, N 21.-С.6737-6746

5.
Antimicrobial nodule-specific cysteine-rich peptides induce membrane depolarization-associated changes in the transcriptome of Sinorhizobium meliloti // Appl. and Environ. Microbiol., 2013. Vol. 79, N 21.-С.6737-6746

6.
Kawase Calcitonin gene-related peptide stimulates potassium efflux through adenosine triphosphate-sensitive potassium channels and produces membrane hyperpolarization in osteoblastic UMR106 cells // Endocrinology, 1998. Vol. 139, N 8.-С.3492-3502

7.
Calcium influx and membrane depolarization induce phosphorylation of neurofilament (NF-M) KSP repeats in PC12 cells // Mol. Brain Res., 1999. Vol. 70, N 1.-С.84-91

8.
Pauli W. Chemosensory and electrophysiological responses in toxicity assessment: Investigations with a ciliated protozoan // Bull. Environ. Combam. and Toxicol, 1992. Vol. 49, N 6.-С.892-899

9.
Kilbourne Edward J. Differential effect of membrane depolarization of levels of tyrosine hydroxylase and dopamine 'бета'-hydroxylase mRNAs in PC12 pheochromocytoma cells // Mol. Brain Res., 1990. Vol. 8, N 2.-С.121-127

10.
De Differential regulation of neuronal nicotinic ACh receptor subunit genes in cultured neonatal rat sympathetic neurons: Specific induction of 'альфа'[7] by membrane depolarization through a Ca{2+}/calmodulin-dependent kinase pathway // J. Neurosci., 1995. Vol. 15, N 12.-С.7966-7978

11.
Mannuzzu Lidia M. Direct physical measure of conformational rearrangement underlying potassium channel gating // Science, 1996. Vol. 271, N 5246.-С.213-216

12.
Zhu W.H. D[2] receptor modulation of membrane conductances in PC12 cells // FASEB Journal, 1997. Vol. 11, N 3.-С.133

13.
Effects of membrane depolarization and changes in intra- and extracellular calcium concentration on phosphoinositide hydrolysis in bovine tracheal smooth muscle // Biochem. Pharmacol., 1994. Vol. 47, N 12.-С.2171-2179

14.
Shen Ke-fei Schwartzkroin Philip A. Effects of temperature alterations on population and cellular activities in hippocampal slices from mature and immature rabbit // Brain Res., 1988. Vol. 475, N 2.-С.305-316

15.
Al-Mehdi Abu B. Endothelial cell oxidant generation during K{+}-induced membrane depolarization // J. Cell. Physiol., 1996. Vol. 166, N 2.-С.274-280

16.
Fenamates: A novel class of reversible gap junction blockers // J. Pharmacol. and Exp. Ther., 2001. Vol. 298, N 3.-С.1033-1041

17.
Granzyme B can cause mitochondrial depolarization and cell death in the absence of BID, BAX, and BAK // Proc. Nat. Acad. Sci. USA, 2001. Vol. 98, N 26.-С.14985-14990

18.
Granzyme B can cause mitochondrial depolarization and cell death in the absence of BID, BAX, and BAK // Proc. Nat. Acad. Sci. USA, 2001. Vol. 98, N 26.-С.14985-14990

19.
Granzyme B can cause mitochondrial depolarization and cell death in the absence of BID, BAX, and BAK // Proc. Nat. Acad. Sci. USA, 2001. Vol. 98, N 26.-С.14985-14990

20.
Gorelova Histamine depolarizes cholinergic septal neurons // J. Neurophysiol., 1996. Vol. 75, N 2.-С.707-714

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