High resolution two-dimensional electrophoresis of proteins.

Высокоразрешающая двухмерная электрофорез белков
Patrick H. O’Farrell
1975-05-01

high-resolution proteome separationisoelectric focusing (IEF)protein autoradiography sensitivitysodium dodecyl sulfate electrophoresis (SDS-PAGE)two-dimensional polyacrylamide gel electrophoresis
A technique has been developed for the separation of proteins by two-dimensional polyacrylamide gel electrophoresis. Due to its resolution and sensitivity, this technique is a powerful tool for the analysis and detection of proteins from complex biological sources. Proteins are separated according to isoelectric point by isoelectric focusing in the first dimension, and according to molecular weight by sodium dodecyl sulfate electrophoresis in the second dimension. Since these two parameters are unrelated, it is possible to obtain an almost uniform distribution of protein spots across a two-diminsional gel. This technique has resolved 1100 different components from Escherichia coli and should be capable of resolving a maximum of 5000 proteins. A protein containing as little as one disintegration per min of either 14C or 35S can be detected by autoradiography. A protein which constitutes 10 minus 4 to 10 minus 5% of the total protein can be detected and quantified by autoradiography. The reproducibility of the separation is sufficient to permit each spot on one separation to be matched with a spot on a different separation. This technique provides a method for estimation (at the described sensitivities) of the number of proteins made by any biological system. This system can resolve proteins differing in a single charge and consequently can be used in the analysis of in vivo modifications resulting in a change in charge. Proteins whose charge is changed by missense mutations can be identified. A detailed description of the methods as well as the characteristics of this system are presented.
1
Detection sensitivity allows autoradiographic detection of proteins containing as little as one disintegration per minute of 14C or 35S.
2
Developed a high-resolution two-dimensional polyacrylamide gel electrophoresis technique separating proteins by isoelectric point and molecular weight.
3
Method can resolve proteins differing by a single charge, enabling analysis of in vivo charge-altering modifications and identification of missense mutation–induced charge changes.
4
Proteins comprising between 10^-4 and 10^-5% of total protein can be detected and quantified by autoradiography.
5
Provides a practical means to estimate the number of proteins produced by a biological system at the stated sensitivities.
6
Separation reproducibility is sufficient to match individual protein spots across different gels.
7
Technique resolved 1,100 different components from Escherichia coli and is estimated capable of resolving up to 5,000 proteins.

Two-dimensional polyacrylamide gel electrophoresis system for protein separation

High-resolution separation, detection and reproducibility of protein components (distribution by isoelectric point and molecular weight), sensitivity limits, and ability to resolve charge-altering variants and estimate protein number in complex biological samples

Publication Details
Publication Date
1975-05-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Patrick H. O’Farrell
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%