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  • 2005-2009
  • 1995-1999  (2)
  • 1965-1969
  • 74.25Fy  (1)
  • Calcium pump  (1)
  • 1
    ISSN: 1437-7799
    Keywords: Key words SMP30 ; Calcium efflux ; Tubular epithelia ; Calcium pump ; Calmodulin
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Background. Senescence marker protein-30 (SMP30), a calcium binding protein, is preferentially expressed in the renal proximal tubules and hepatocytes and is presumed to play a role in Ca2+ homeostasis. Methods. To explore its physiological functions in the tubular cells, we investigated the effect of SMP30 on Ca2+ efflux via the ATP-dependent plasma membrane calcium pump. LLC-PK1 cells were stably transfected with a cDNA encoding SMP30, and the established transfectants were subjected to ATP responses. Results. Overexpression of SMP30 significantly increased Ca2+ efflux under both basal and ATP-stimulated conditions. Inhibition of calmodulin by trifluoperazine abrogated the enhanced Ca2+ efflux, suggesting that SMP30 activated the calmodulin-dependent Ca2+ pump. It is known that Ca2+ superfluous influx induces cellular injury. Compared with mock-transfected cells, LLC-PK1 cells expressing SMP30 showed resistance to cellular death triggered by Ca2+ superfluous influx. Conclusion. These results suggest the possibility that, in renal tubular cells, endogenous SMP30 participates in Ca2+ efflux via activating the calmodulin-dependent Ca2+ pump and thereby confers resistance of the cells against injury caused by high intracellular Ca2+ concentrations.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of low temperature physics 105 (1996), S. 915-920 
    ISSN: 1573-7357
    Keywords: 74.25Fy ; 74.62Fj ; 74.72Dn
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Out-of-plane resistivity pc(T) of optimally-doped high-Tc superconductor La2−xSrxCuO4 has been investigated under hydrostatic pressure up to 8GPa. We found a drastic decrease in ϱc which reaches 50% at 8GPa. The large change of ϱc is understood as due to a small variation of the lattice parameter c. In comparison with a change of pc(T) estimated from a change of c due to thermal contraction, we conclude that the well known temperature-linear dependence of ϱc is apparent metallic one; essentially ϱc is nonmetallic over the whole temperature range, and can be described in terms of tunneling or quantum hopping conduction between CuO2 layers. Such tunneling conduction is enhanced by the scattering in the CuO2 plane at the oxygen defects which affect the in-plane resistivity only very weakly.
    Type of Medium: Electronic Resource
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