The regulatory strategies of c-myc and c-fos proto-oncogenes share some common mechanisms. 1988

J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
Laboratoire de Biologie Moléculaire et Laboratoire de Biochimie des Protéines, UA CNRS 1191, Université des Sciences et Techniques du Languedoc, Montpellier, France.

There is evidence for both transcriptional and post-transcriptional levels of regulation of c-fos and c-myc proto-oncogenes. Transcription of both genes can be regulated at the level of initiation. However, it was recently shown in various situations for c-myc, and in one case for c-fos, that these genes can also be down-regulated by a block to elongation of nascent RNA chains. Both c-myc and c-fos mRNAs are known to be extremely unstable (half-lives around 10-15 min) and c-myc RNA turnover has been shown to be modulated under various physiological situations. Atypical c-myc RNAs found in certain mouse plasma cell tumors (MPCs) and Burkitt, lymphomas (BLs) are significantly and sometimes dramatically more stable than their normal counterparts. In this review we report that: i) transcriptional control elements reside in murine c-myc and c-fos first exons. Daudi cells provide an example of c-myc activation via removal of this block to elongation; ii) elements necessary for the rapid degradation of c-fos and c-myc RNAs reside in their 3' non-coding regions; iii) these destabilizing elements can be counteracted by atypical 5' sequences found in abnormal c-myc transcripts from BLs and mouse plasmocytomas.

UI MeSH Term Description Entries
D011519 Proto-Oncogenes Normal cellular genes homologous to viral oncogenes. The products of proto-oncogenes are important regulators of biological processes and appear to be involved in the events that serve to maintain the ordered procession through the cell cycle. Proto-oncogenes have names of the form c-onc. Proto-Oncogene,Proto Oncogene,Proto Oncogenes
D005786 Gene Expression Regulation Any of the processes by which nuclear, cytoplasmic, or intercellular factors influence the differential control (induction or repression) of gene action at the level of transcription or translation. Gene Action Regulation,Regulation of Gene Expression,Expression Regulation, Gene,Regulation, Gene Action,Regulation, Gene Expression
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012323 RNA Processing, Post-Transcriptional Post-transcriptional biological modification of messenger, transfer, or ribosomal RNAs or their precursors. It includes cleavage, methylation, thiolation, isopentenylation, pseudouridine formation, conformational changes, and association with ribosomal protein. Post-Transcriptional RNA Modification,RNA Processing,Post-Transcriptional RNA Processing,Posttranscriptional RNA Processing,RNA Processing, Post Transcriptional,RNA Processing, Posttranscriptional,Modification, Post-Transcriptional RNA,Modifications, Post-Transcriptional RNA,Post Transcriptional RNA Modification,Post Transcriptional RNA Processing,Post-Transcriptional RNA Modifications,Processing, Posttranscriptional RNA,Processing, RNA,RNA Modification, Post-Transcriptional,RNA Modifications, Post-Transcriptional
D012333 RNA, Messenger RNA sequences that serve as templates for protein synthesis. Bacterial mRNAs are generally primary transcripts in that they do not require post-transcriptional processing. Eukaryotic mRNA is synthesized in the nucleus and must be exported to the cytoplasm for translation. Most eukaryotic mRNAs have a sequence of polyadenylic acid at the 3' end, referred to as the poly(A) tail. The function of this tail is not known for certain, but it may play a role in the export of mature mRNA from the nucleus as well as in helping stabilize some mRNA molecules by retarding their degradation in the cytoplasm. Messenger RNA,Messenger RNA, Polyadenylated,Poly(A) Tail,Poly(A)+ RNA,Poly(A)+ mRNA,RNA, Messenger, Polyadenylated,RNA, Polyadenylated,mRNA,mRNA, Non-Polyadenylated,mRNA, Polyadenylated,Non-Polyadenylated mRNA,Poly(A) RNA,Polyadenylated mRNA,Non Polyadenylated mRNA,Polyadenylated Messenger RNA,Polyadenylated RNA,RNA, Polyadenylated Messenger,mRNA, Non Polyadenylated
D014158 Transcription, Genetic The biosynthesis of RNA carried out on a template of DNA. The biosynthesis of DNA from an RNA template is called REVERSE TRANSCRIPTION. Genetic Transcription

Related Publications

J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
February 1990, The Journal of clinical endocrinology and metabolism,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
January 1988, British journal of cancer,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
February 1995, Biochemical Society transactions,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
January 1990, Bulletin du cancer,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
January 1992, Neoplasma,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
May 2002, Zhonghua zheng xing wai ke za zhi = Zhonghua zhengxing waike zazhi = Chinese journal of plastic surgery,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
February 1986, The EMBO journal,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
August 1997, Molecular and cellular biochemistry,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
May 1987, Journal of cellular physiology,
J M Blanchard, and M Piechaczyk, and P Fort, and A Bonnieu, and N Mechti, and J Rech, and M Cuny, and B Lebleu, and P Jeanteur
June 1989, Oncogene,
Copied contents to your clipboard!