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PMID: 4364645 Published · ppublish English Journal Article

Lead-induced inclusion bodies: composition and probable role in lead metabolism.

Environmental health perspectives ·Vol. 7 ·1974-05-00 ·Pages 121-7

Moore JF, Goyer RA

Abstract

Lead-induced inclusion bodies in renal tubular cells of rats have been studied in vitro after isolation by differential centrifugation. The inclusion bodies are insoluble in physiological media but may be dissolved in denaturants like 6M urea and sodium deoxycholate. They contain about 40-50 mug of lead/mg protein, but only about 10% of this is tightly bound. They also contain calcium, iron, zinc, copper, and cadmium. The protein is rich in glutamic and aspartic acids, glycine and cystine. When dissolved in 6M urea, the protein migrates as a single band on acrylamide gel electrophoresis and has a molecular weight of 27,500. It is suggested that the inclusion bodies function as an intracellular depot of nondiffusible lead. Further studies have been directed toward finding a free, unaggregated lead-containing protein fraction. Nuclear proteins from kidneys of lead-toxic rats were separated into NaCl-, Tris-, and NaOH-soluble fractions and an insoluble acidic fraction. A quantitatively small lead-containing protein was found in the 0.14M NaCl fraction. Amino acid composition, electrophoretic mobility, molecular weight, and ability to bind lead are similar to those of insoluble inclusion body protein. The possible role of this soluble lead-binding protein in the formation of nuclear inclusion bodies is at present time not certain. These studies do suggest, however, that protein-bound lead in renal tubular cells may be partitioned between insoluble and nondiffusible morphologically discrete inclusion bodies and a soluble, extractable fraction which is presumably diffusable.

MeSH Terms
Amino Acids/analysis Animals Electrophoresis, Polyacrylamide Gel In Vitro Techniques Inclusion Bodies/analysis,drug effects Kidney Tubules/pathology Lead/analysis,metabolism,pharmacology Male Metals/analysis Microscopy, Electron Molecular Weight Nucleoproteins Protein Binding Rats Sodium Chloride Urea
Chemicals
Amino Acids Metals Nucleoproteins Lead Sodium Chloride Urea
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Moore J F
Goyer R A
References (11)
11 references, click to expand
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Article Info
Journal
Environmental health perspectives
Abbr.
Environ Health Perspect
ISSN
0091-6765
Published
1974-05-00
Pages
121-7
Language
English
Region
United States
NLM ID
0330411
PMCID
PMC1475129
Subset
IM
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