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Sec62  -  SEC62 homolog (S. cerevisiae)

Rattus norvegicus

Synonyms: Ab2-292, Tloc1
 
 
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Disease relevance of Tloc1

  • METHODS: Translocation to both mesenteric lymph nodes and blood was compared in three groups of rats: portal-hypertensive (single-stage calibrated stenosis of portal vein), sham-operated, and unoperated controls [1].
  • Protein Kinase C-Dependent Mitochondrial Translocation of Proapoptotic Protein Bax on Activation of Inducible Nitric-Oxide Synthase in Rostral Ventrolateral Medulla Mediates Cardiovascular Depression during Experimental Endotoxemia [2].
  • BACKGROUND/AIMS: Translocation of indigenous bacteria from the gut lumen of cirrhotic animals to mesenteric lymph nodes appears to be an important step in the pathogenesis of spontaneous bacterial peritonitis [3].
  • However, the mechanism and route by which bacteria exit from the gut and enter the fluid remain unclear. "Translocation" of bacteria from the gut to extraintestinal sites has been postulated in the pathogenesis of gram-negative sepsis in intensive care unit patients, burn-wound sepsis, and sepsis associated with chemotherapy [4].
  • INTRODUCTION: Translocation of bacteria from the gut into pancreatic necrosis is an important factor in the development of septic complications and mortality in acute pancreatitis [5].
 

High impact information on Tloc1

 

Biological context of Tloc1

 

Anatomical context of Tloc1

 

Associations of Tloc1 with chemical compounds

 

Analytical, diagnostic and therapeutic context of Tloc1

References

  1. Bacterial translocation in the portal-hypertensive rat: studies in basal conditions and on exposure to hemorrhagic shock. Sorell, W.T., Quigley, E.M., Jin, G., Johnson, T.J., Rikkers, L.F. Gastroenterology (1993) [Pubmed]
  2. Protein Kinase C-Dependent Mitochondrial Translocation of Proapoptotic Protein Bax on Activation of Inducible Nitric-Oxide Synthase in Rostral Ventrolateral Medulla Mediates Cardiovascular Depression during Experimental Endotoxemia. Chan, J.Y., Chang, A.Y., Wang, L.L., Ou, C.C., Chan, S.H. Mol. Pharmacol. (2007) [Pubmed]
  3. Intestinal bacterial overgrowth and bacterial translocation in cirrhotic rats with ascites. Guarner, C., Runyon, B.A., Young, S., Heck, M., Sheikh, M.Y. J. Hepatol. (1997) [Pubmed]
  4. Translocation of gut bacteria in rats with cirrhosis to mesenteric lymph nodes partially explains the pathogenesis of spontaneous bacterial peritonitis. Runyon, B.A., Squier, S., Borzio, M. J. Hepatol. (1994) [Pubmed]
  5. Inhibition of inducible nitric oxide synthase reduces bacterial translocation in a rat model of acute pancreatitis. Simsek, I., Mas, M.R., Yasar, M., Ozyurt, M., Saglamkaya, U., Deveci, S., Comert, B., Basustaoglu, A., Kocabalkan, F., Refik, M. Pancreas (2001) [Pubmed]
  6. Gradual Translocation of Spatial Correlates of Neuronal Firing in the Hippocampus toward Prospective Reward Locations. Lee, I., Griffin, A.L., Zilli, E.A., Eichenbaum, H., Hasselmo, M.E. Neuron (2006) [Pubmed]
  7. Role of Insulin-dependent Cortical Fodrin/Spectrin Remodeling in Glucose Transporter 4 Translocation in Rat Adipocytes. Liu, L., Jedrychowski, M.P., Gygi, S.P., Pilch, P.F. Mol. Biol. Cell (2006) [Pubmed]
  8. The v-Ki-Ras oncogene alters cAMP nuclear signaling by regulating the location and the expression of cAMP-dependent protein kinase IIbeta. Feliciello, A., Giuliano, P., Porcellini, A., Garbi, C., Obici, S., Mele, E., Angotti, E., Grieco, D., Amabile, G., Cassano, S., Li, Y., Musti, A.M., Rubin, C.S., Gottesman, M.E., Avvedimento, E.V. J. Biol. Chem. (1996) [Pubmed]
  9. Role of protein kinase C in the regulation of glucose transport in the rat adipose cell. Translocation of glucose transporters without stimulation of glucose transport activity. Saltis, J., Habberfield, A.D., Egan, J.J., Londos, C., Simpson, I.A., Cushman, S.W. J. Biol. Chem. (1991) [Pubmed]
  10. Mechanism of phosphorylation in the lumen of the Golgi apparatus. Translocation of adenosine 5'-triphosphate into Golgi vesicles from rat liver and mammary gland. Capasso, J.M., Keenan, T.W., Abeijon, C., Hirschberg, C.B. J. Biol. Chem. (1989) [Pubmed]
  11. Inositol 1,4,5-trisphosphate and intracellular Ca2+ homeostasis in clonal pituitary cells (GH3). Translocation of Ca2+ into mitochondria from a functionally discrete portion of the nonmitochondrial store. Biden, T.J., Wollheim, C.B., Schlegel, W. J. Biol. Chem. (1986) [Pubmed]
  12. Embryonic development of the rat cerebellum. II. Translocation and regional distribution of the deep neurons. Altman, J., Bayer, S.A. J. Comp. Neurol. (1985) [Pubmed]
  13. Biogenesis of endoplasmic reticulum phosphatidylcholine. Translocation of intermediates across the membrane bilayer during methylation of phosphatidylethanolamine. Higgins, J.A. Biochim. Biophys. Acta (1981) [Pubmed]
  14. Mechanism of peptide-induced mast cell degranulation. Translocation and patch-clamp studies. Lorenz, D., Wiesner, B., Zipper, J., Winkler, A., Krause, E., Beyermann, M., Lindau, M., Bienert, M. J. Gen. Physiol. (1998) [Pubmed]
  15. Evidence for 5 alpha-androstane-3 beta, 17 beta-diol binding to the estrogen receptor in the cytosol from male rat pituitary. Thieulant, M.L., Samperez, S., Jouan, P. Endocrinology (1981) [Pubmed]
  16. Effects of some organic calcium antagonists and other procedures affecting Ca2+ Translocation on KCl-induced contractions in the rat vas deferens. Hay, D.W., Wadsworth, R.M. Br. J. Pharmacol. (1982) [Pubmed]
  17. A novel activation process of protein kinase C in the remote, non-ischemic area of an infarcted heart is mediated by angiotensin-AT1 receptors. Simonis, G., Dahlem, M.H., Hohlfeld, T., Yu, X., Marquetant, R., Strasser, R.H. J. Mol. Cell. Cardiol. (2003) [Pubmed]
  18. Acute and long-term effects of insulin-like growth factor I on glucose transporters in muscle cells. Translocation and biosynthesis. Bilan, P.J., Mitsumoto, Y., Ramlal, T., Klip, A. FEBS Lett. (1992) [Pubmed]
  19. Effect of atractylosides, palmitoyl coenzyme A, and anion transport inhibitors on translocation of nucleotide sugars and nucleotide sulfate into Golgi vesicles. Capasso, J.M., Hirschberg, C.B. J. Biol. Chem. (1984) [Pubmed]
  20. Effect of colchicine on estrogen action. II. Translocation of 17 beta-estradiol cytosol receptor complex into the nucleus. Kalimi, M., Fujimoto, G.I. Biochim. Biophys. Acta (1978) [Pubmed]
  21. Translocation of protein kinase C isoforms to subcellular targets in ischemic and anesthetic preconditioning. Uecker, M., Da Silva, R., Grampp, T., Pasch, T., Schaub, M.C., Zaugg, M. Anesthesiology (2003) [Pubmed]
 
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