Gene Expression · 2002 · 132 citations · 13 references
Vesicular TrafficLiver Cancer TissuesPathologyCancer BiologyTumor BiologyVesicular Transport SystemVariable ExpressionsCell SignalingCancer ResearchG Protein-coupled ReceptorLiver PhysiologyCell BiologyTumor MicroenvironmentSignal TransductionRab FamilyCancer GenomicsLiver CancerTumor SuppressorIntracellular TraffickingSystems BiologyMedicineHepatocellular Carcinoma
Digestion and detoxification are the two most important functions of the liver, and liver cells always keep a high metabolism level and active vesicular traffic. The malfunction of the vesicular traffic system might be a cause of the abnormal biological behavior of cancerous liver cells. The Ras superfamily is known to regulate various steps of vesicular traffic in eukaryotic cells. It would be significant to determine the change of vesicular transport molecules such as the members of Ras superfamily in carcinogenesis of liver cells. In the present study, we have cloned nine novel genes encoding human small GTPases: RAB1B, RAB4B, RAB10, RAB22A, RAB24, RAB25 ARL5, SARA1, and SARA2, among which the former six belong to the RAB family and the latter three belong to the ARF/SAR1 family. The identification of these new genes has greatly enlarged the pool of the Ras superfamily. It is interesting to find that they are upregulated in most of the 11 hepatocellular carcinoma and 1 cholangiohepatoma cases. Furthermore, the expression in 16 normal human adult tissues, the chromosome loci, and the gene structures of the nine genes are also described. The above findings could be valuable for understanding the vesicular transport system and elucidating the molecular basis of liver cancer carcinogenesis.
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Interaction of a Golgi-Associated Kinesin-Like Protein with Rab6
Arnaud Échard, Florence Jollivet, Olivier Martinez et al. · Science · 1998 · 510 citations
Rab5 regulates motility of early endosomes on microtubules
Erik Nielsen, Fedor F. Severin, Jonathan Backer et al. · Nature Cell Biology · 1999 · 505 citations
Richard Kahn, Alfred G. Gilman · Journal of Biological Chemistry · 1984 · 411 citations · Full text
Protein Function, Signal Transduction, Protein Expression +14