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Transformation of NIH 3T3 cells by microinjection of Ha-ras p21 protein
Abstract:
Alteration in gene structure has been shown to occur in some human tumours. These altered genes, termed oncogenes, were originally identified by their ability to induce foci of transformed cells on transfected mouse 3T3 cultures. The oncogene identified in the EJ/T24 human bladder carcinoma is similar to the transforming gene of BALB and Harvey murine sarcoma virus (MSV) and differs from its counterpart in normal cells by a single amino acid. All three of these Ha-ras genes direct the production of similar proteins (p21). While the ras gene appears to be involved in tumour formation in some situations, its role is unclear. The ras protein product (p21) binds guanine nucleotides and has a unique autophosphorylating activity, but no other enzymatic activity has been found. We report here the injection of purified Ha-ras p21 protein, made in Escherichia coli from the gene of BALB-MSV, into NIH 3T3 cells and show that the purified protein itself is sufficient to induce a transformed morphology. In addition, the injected protein stimulates quiescent cells to enter the S-phase of the cell cycle. This result clearly demonstrates that the ras gene functions directly through the protein product. It also establishes an assay for the protein which depends on its activity within a living cell. The transforming activity of a p21 ras protein equivalent to the product of the normal cellular ras gene, is also demonstrated.
Insights
The ras protein (p21) directly causes cell transformation and stimulates cell cycle entry. This study demonstrates the ras gene functions through its protein product, establishing a new assay for its activity.
Area of Science:
- Molecular biology
- Oncology
- Cell biology
Background:
- Altered genes, known as oncogenes, are implicated in human tumors.
- The ras oncogene, identified in human bladder carcinoma, shares similarities with viral transforming genes.
- The ras protein (p21) binds guanine nucleotides and has autophosphorylating activity, but its precise role in transformation is unclear.
Purpose of the Study:
- To investigate the direct role of the Ha-ras p21 protein in cellular transformation.
- To establish a functional assay for ras protein activity in living cells.
Main Methods:
- Purified Ha-ras p21 protein from BALB-MSV was injected into NIH 3T3 cells.
- Cellular morphology and cell cycle progression were analyzed post-injection.
Main Results:
- Direct injection of purified Ha-ras p21 protein induced transformed cell morphology.
- The injected protein stimulated quiescent cells to enter the S-phase of the cell cycle.
- A p21 ras protein equivalent to the normal cellular ras gene product also exhibited transforming activity.
Conclusions:
- The ras gene functions directly through its protein product, p21.
- The purified p21 protein is sufficient to induce cellular transformation and cell cycle progression.
- This study establishes a novel cell-based assay for ras protein activity.