Abstract
An acidic nucleolar phosphoprotein with a subunit M(r) of 70,000 was purified as an apparent dimer of 139,000 from isolated nuclei of the slime mold Physarum polycephalum. The protein was purified without the aid of strong dissociating agents after its selective phosphorylation in isolated nuclei by a polyamine-mediated reaction. Its amino acid composition resembled that of a nucleolar phosphoprotein from Novikoff hepatoma ascites cells. The phosphoprotein stimulated rRNA synthesis 5-fold by RNA polymerase I within a nucleolar, ribosomal deoxyribonucleoprotein complex isolated from nucleoli of P. polycephalum. It was also identified as a component of the complex. It bound with high affinity and specificity to the palindromic ribosomal DNA of 38 x 10(6)M(r) from P. polycephalum, which contained two coding sequences for 5.8S, 19S, and 26S rRNA. It also bound to three fragments of ribosomal DNA of M(r) 21.2 x 10(6), 17.1 x 10(6), and 8.1 x 10(6), prepared by cleavage with restriction endonucleases HindIII, PstI, and BamHI, respectively. All of these fragments included the symmetry axis of the palindromic ribosomal DNA. The phosphoprotein that had been treated with alkaline phosphataseagarose to hydrolyze the phosphate groups did not stimulate transcription and did not bind to ribosomal DNA or to the restriction fragments indicated. We have thus isolated a specific phosphoprotein with the capacity to stimulate transcription of a specific set of genes in a eukaryote. These findings suggest that this phosphoprotein may specifically regulate functions of ribosomal DNA in a manner dependent on its degree of phosphorylation.
MeSH Terms
Amino Acids/analysis
Animals
Cell Nucleolus/metabolism
DNA Restriction Enzymes
Kinetics
Liver Neoplasms, Experimental/metabolism
Molecular Weight
Nucleic Acid Hybridization
Nucleoproteins/metabolism
Phosphoproteins/metabolism
Phosphorylation
Physarum/metabolism
Polyamines/pharmacology
RNA, Ribosomal/biosynthesis
Rats
Transcription, Genetic
Chemicals
Amino Acids
Nucleoproteins
Phosphoproteins
Polyamines
RNA, Ribosomal
DNA Restriction Enzymes
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Kuehn G D
Affolter H U
Atmar V J
Seebeck T
Gubler U
Braun R
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