Nucleic Acids Research · 2005 · 99 citations · 59 references
Molecular RegulationPathologyMolecular BiologyTumor BiologyTranscriptional RegulationProtein ExpressionCell RegulationTranscription Factor LzipGrowth Suppressor ProteinCell SignalingMolecular PhysiologyLiver PhysiologyBzip FactorsGene ExpressionCell BiologyTranscription RegulationHepatologyNatural SciencesHepatitisLiver DiseaseLiver CancerTumor SuppressorLiverMedicineHepatocellular CarcinomaAdult Liver
We have previously characterized transcription factor LZIP to be a growth suppressor targeted by hepatitis C virus oncoprotein. In search of proteins closely related to LZIP, we have identified a liver-enriched transcription factor CREB-H. LZIP and CREB-H represent a new subfamily of bZIP factors. CREB-H activates transcription by binding to cAMP responsive element, box B, and ATF6-binding element. Interestingly, CREB-H has a putative transmembrane (TM) domain and it localizes ambiently to the endoplasmic reticulum. Proteolytic cleavage that removes the TM domain leads to nuclear translocation and activation of CREB-H. CREB-H activates the promoter of hepatic gluconeogenic enzyme phosphoenolpyruvate carboxykinase. This activation can be further stimulated by cAMP and protein kinase A. CREB-H transcript is exclusively abundant in adult liver. In contrast, the expression of CREB-H mRNA is aberrantly reduced in hepatoma tissues and cells. The enforced expression of CREB-H suppresses the proliferation of cultured hepatoma cells. Taken together, our findings suggest that the liver-enriched bZIP transcription factor CREB-H is a growth suppressor that plays a role in hepatic physiology and pathology.
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Mutation of the mouse klotho gene leads to a syndrome resembling ageing.
PubMed · 1997 · 66.5K citations
Control of inositol 1,4,5-trisphosphate-induced Ca2+ release by cytosolic Ca2+
Martin D. Bootman, Ludwig Missiaen, Jan B. Parys et al. · Biochemical Journal · 1995 · 5.1K citations
Kyosuke Haze, Hiderou Yoshida, Hideki Yanagi et al. · Molecular Biology of the Cell · 1999 · 2K citations · Full text
Protein Function, Signal Transduction, Protein Expression +15