Related Experiment Videos
In vitro synthesis of polypeptides of moderately large size by poly(A)-containing messenger RNA from postmortem human
Abstract:
Studies were undertaken to optimize the conditions for isolation and in vitro translation of poly(A)-containing mRNA from human postmortem brain. The comparison of several methods for preparation of mRNA from frozen mouse brain indicated that although the yield of mRNA was increased using polysomes prepared in the presence of ribonucleoside vanadyl complexes and subsequently extracted with guanidinium thiocyanate, the translation products were indistinguishable from those synthesized by total cellular RNA directly extracted from tissue with guanidinium thiocyanate. The oligo d(T)-cellulose-purified poly(A)-containing mRNA preparations were translated in vitro in a rabbit reticulocyte lysate in the presence of L-[35S]methionine. Messenger RNA from frozen mouse brain stimulated protein synthesis from 9- to 20-fold over endogenous mRNA. Over 450 polypeptides were reproducibly synthesized and separated by two-dimensional polyacrylamide gel electrophoresis (PAGE); size classes up to 130,000 daltons were present. Direct extraction of RNA from frozen human cerebral cortex and cerebellum with guanidinium thiocyanate followed by oligo d(T)-cellulose chromatography yielded 1.8 micrograms/g and 2.0 micrograms/g, respectively, of poly(A)-containing mRNA; this represents a two- to fourfold increase over our earlier results. In the rabbit reticulocyte translation system human brain mRNA stimulated protein synthesis nearly threefold over endogenous mRNA. Compared with earlier studies, the number of newly synthesized polypeptides was increased by 30%. Over 300 species were separated by two-dimensional PAGE, and size classes up to 130,000 daltons were present, as compared to 70,000 in an earlier report. The polypeptides synthesized by human cerebral cortex and cerebellum were indistinguishable. However, several appeared to be uniquely human when compared with the products synthesized by mouse brain mRNA. The method described for the preparation of postmortem human brain mRNA eliminates the need to prepare polysomes, which are recovered in variable and low yield from the postmortem human brain. The procedure appears applicable to studies on the synthesis of moderately large human brain polypeptides and for investigations of brain protein polymorphism when relatively large numbers of products are required for analysis.
Insights
Optimized methods for isolating human brain mRNA yield more poly(A)-containing mRNA. This advance enables better analysis of human brain proteins and their unique characteristics compared to mouse models.
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- Isolation of poly(A)-containing mRNA from postmortem human brain is crucial for understanding brain function and disease.
- Previous methods for mRNA isolation from postmortem tissue yielded variable and low amounts, limiting downstream analyses.
- Optimizing mRNA extraction and in vitro translation is essential for studying human brain gene expression.
Purpose of the Study:
- To optimize conditions for isolating poly(A)-containing mRNA from human postmortem brain.
- To compare different mRNA preparation methods using mouse brain as a model.
- To analyze the synthesized polypeptides from human brain mRNA and compare them with mouse brain mRNA products.
Main Methods:
- Comparison of mRNA preparation methods from frozen mouse brain, including guanidinium thiocyanate extraction and polysome isolation.
- In vitro translation of purified poly(A)-containing mRNA using a rabbit reticulocyte lysate system with L-[35S]methionine.
- Separation and analysis of synthesized polypeptides using two-dimensional polyacrylamide gel electrophoresis (PAGE).
Main Results:
- Direct guanidinium thiocyanate extraction of RNA followed by oligo d(T)-cellulose chromatography yielded significantly more poly(A)-containing mRNA from human brain tissue compared to previous methods.
- Human brain mRNA stimulated protein synthesis nearly threefold in the rabbit reticulocyte system, producing over 300 polypeptide species up to 130,000 daltons.
- Several synthesized polypeptides appeared uniquely human when compared to those produced by mouse brain mRNA, suggesting species-specific protein synthesis.
Conclusions:
- The described method for preparing postmortem human brain mRNA is efficient and eliminates the need for polysome preparation, overcoming yield limitations.
- This optimized procedure is suitable for studying the synthesis of moderately large human brain polypeptides.
- The method facilitates investigations into brain protein polymorphism requiring analysis of a large number of products.