Lead targets GRP78, a molecular chaperone, in C6 rat glioma cells

Y Qian1, E D Harris, Y Zheng

  • 1Department of Veterinary Anatomy, Texas A&M University, College Station, Texas, 77843, USA.

Insights

Lead (Pb) exposure affects many children. Astroglia adapt by increasing glucose-regulated protein (GRP78), a molecular chaperone, which may directly bind lead, aiding tolerance.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Toxicology

Background:

  • Lead (Pb) exposure is a significant public health concern, particularly for young children.
  • Astroglia, a type of brain cell, sequester lead, acting as a protective depot.
  • Astroglia exhibit adaptive tolerance to high intracellular lead levels, a mechanism not fully understood.

Purpose of the Study:

  • To investigate the biochemical basis of astroglial lead tolerance.
  • To identify specific proteins involved in the cellular adaptation to lead exposure.
  • To explore the role of glucose-regulated protein (GRP78) in lead sequestration and tolerance.

Main Methods:

  • Cultured C6 rat glioma cells (astroglia-like) were exposed to lead acetate.
  • Intracellular protein levels were analyzed using sequence analysis.
  • In vitro binding assays were performed using affinity columns with lead and other metal ions.
  • Competition assays were conducted with glutathione (GSH), bovine serum albumin (BSA), and Menkes protein.

Main Results:

  • Lead exposure increased intracellular levels of glucose-regulated protein (GRP78) in astroglia-like cells.
  • GRP78 accumulation correlated with the duration of lead exposure.
  • GRP78 demonstrated specific binding to lead ions in vitro, with weaker affinity for zinc or nickel.
  • The heavy metal binding domain of Menkes protein competed with GRP78 for lead binding.

Conclusions:

  • Glucose-regulated protein (GRP78) is implicated in the astroglial lead tolerance mechanism.
  • GRP78 may directly interact with lead ions, facilitating cellular adaptation.
  • Increased GRP78 synthesis represents a potential adaptive response to lead exposure in astroglia.

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