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PMID: 3404006 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Phosphorus imaging of the 7-S ribonucleoprotein particle.

Journal of ultrastructure and molecular structure research ·Vol. 99 ·No. 1 ·1988-04-00 ·Pages 59-69

Bazett-Jones DP

Abstract

In this study an unprecedented demonstration of the detection sensitivity of electron spectroscopic imaging (ESI) is reported. This microanalytical technique is capable of forming elemental maps of a specimen with high sensitivity and resolution by forming images with electrons that have lost particular amounts of energy due to interactions with the atoms of the specimen. The 7-S ribonucleoprotein particle, composed of one molecule of 5-S RNA and one molecule of the 40K MW protein, TFIIIa, was used for this demonstration. As few as 120 phosphorus atoms of the 5-S RNA have been detected and their localization in the particle determined. The shape of the 7-S particle is ellipsoidal with a long axis of 15.0 nm and a shorter axis between 8 and 9 nm. Similarly, the 5-S RNA is also an elongated structure located asymmetrically on one side of the particle. The average signal-to-noise ratio over the particle in the net phosphorus images is 14 whereas the ratio measured for the nucleosome containing 2.4-fold more phosphorus is 30.

MeSH Terms
Animals Electron Probe Microanalysis Microscopy, Electron Phosphorus/analysis RNA, Ribosomal/analysis RNA, Ribosomal, 5S/analysis Ribonucleoproteins/analysis Transcription Factor TFIIIA Transcription Factors/analysis Xenopus
Chemicals
RNA, Ribosomal RNA, Ribosomal, 5S Ribonucleoproteins Transcription Factor TFIIIA Transcription Factors Phosphorus
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Bazett-Jones D P
Department of Medical Biochemistry, University of Calgary, Alberta, Canada.
Article Info
Journal
Journal of ultrastructure and molecular structure research
Abbr.
J Ultrastruct Mol Struct Res
ISSN
0889-1605
Published
1988-04-00
Pages
59-69
Language
English
Region
United States
NLM ID
8612238
Subset
IM
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