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PMID: 21535 Published · ppublish English Comparative Study Journal Article

Comparison of hydrophobic and strongly hydrophilic cleavable crosslinking reagents in intermolecular bond formation in aggregates of proteins or protein-RNA.

Advances in experimental medicine and biology ·Vol. 86A ·1977-00-00 ·Pages 207-14

Fasold H, Bäumert H, Fink G

Abstract

Most of the bifunctional reagents in protein chemistry possess a strongly hydrophobic backbone, derived from aliphatic or aromatic hydrocarbons. Even bifunctionals of more than 30 A in length of this sort form intramolecular bridges preferentially. In recent years, the intermolecular crosslinking of physiological protein aggregates has gained in importance. As shown in the crosslinking of hemoglobin with two sets of hydrophobic and strongly hydrophilic reagents, derived from azo dyes and tartaric acid, respectively, in this case it is not primarily the length of the bifunctional, but the hydrophilic structure that will enhance intermolecular crosslinking. Artificial dimers of native structure may be obtained. For the crosslinking of RNA to protein, we have synthesized a new reagent, 3-(2-bromo-3-oxobutane-1-sulphonyl)-propionic acid p-nitrophenyl ester. In a two step reaction, it is attached to adenine and cytosine moieties at pH 6 first, and to lysine side chains at pH 7,5. The reagent has been applied to the poly-A sequence of globin messenger RNA nucleoprotein.

MeSH Terms
Adenosine Chemical Phenomena Chemistry Cytosine Hydrogen Bonding Hydrogen-Ion Concentration Indicators and Reagents Macromolecular Substances Molecular Conformation Proteins RNA Structure-Activity Relationship
Chemicals
Indicators and Reagents Macromolecular Substances Proteins RNA Cytosine Adenosine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Fasold H
Bäumert H
Fink G
Article Info
Journal
Advances in experimental medicine and biology
Abbr.
Adv Exp Med Biol
ISSN
0065-2598
Published
1977-00-00
Pages
207-14
Language
English
Region
United States
NLM ID
0121103
Subset
IM
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