In the extensive network of interdependent biochemical processes required for cell growth and division, there is mounting evidence that ribosomal DNA transcription by RNA polymerase I (pol I) not only drives cell growth via its direct role in production of the ribosomal RNA (rRNA) component of the protein-synthesis machinery, but that it is also crucial in determining the fate of the cell. Considerable progress has been made in recent years towards understanding both the function of components of the pol I transcription machinery and how cells accomplish the tight control of pol I transcription, balancing the supply of rRNA with demand under different growth conditions.</p
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Cell proliferation and growth is correlated with effective protein synthesis and ribosome biogenesis...
Cell growth and proliferation are processes in the cell that must be tightly regulated. Transcriptio...
In the extensive network of interdependent biochemical processes required for cell growth and divisi...
The rRNAs constitute the catalytic and structural components of the ribosome, the protein synthesis ...
The rRNAs constitute the catalytic and structural components of the ribosome, the protein synthesis ...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase I) is a key determinant of riboso...
Exquisite control of ribosome biogenesis is fundamental for the maintenance of cellular growth and p...
Cell growth requires synthesis of ribosomal RNA by RNA polymerase I (Pol I). Binding of initiation f...
Regulation of growth ultimately depends on the control of synthesis of new ribosomes. Ribosome bioge...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase 1) is a key determinant of riboso...
Regulation of growth ultimately depends on the control of synthesis of new ribosomes. Ribosome bioge...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase 1) is a key determinant of riboso...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Cell proliferation and growth is correlated with effective protein synthesis and ribosome biogenesis...
Cell growth and proliferation are processes in the cell that must be tightly regulated. Transcriptio...
In the extensive network of interdependent biochemical processes required for cell growth and divisi...
The rRNAs constitute the catalytic and structural components of the ribosome, the protein synthesis ...
The rRNAs constitute the catalytic and structural components of the ribosome, the protein synthesis ...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase I) is a key determinant of riboso...
Exquisite control of ribosome biogenesis is fundamental for the maintenance of cellular growth and p...
Cell growth requires synthesis of ribosomal RNA by RNA polymerase I (Pol I). Binding of initiation f...
Regulation of growth ultimately depends on the control of synthesis of new ribosomes. Ribosome bioge...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase 1) is a key determinant of riboso...
Regulation of growth ultimately depends on the control of synthesis of new ribosomes. Ribosome bioge...
Transcription of the major ribosomal RNAs by Pol I (RNA polymerase 1) is a key determinant of riboso...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Ribosomal RNA (rRNA) gene (rDNA) transcription by RNA Polymerase I (Pol I) drives cell growth and un...
Cell proliferation and growth is correlated with effective protein synthesis and ribosome biogenesis...
Cell growth and proliferation are processes in the cell that must be tightly regulated. Transcriptio...