Author: J. Eaton
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Language: en
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Books about The Mechanisms of Transcription Termination by RNA Polymerase II.
Language: en
Pages:
Pages:
Transcription by RNAP is highly regulated in both prokaryotic and eukaryotic cells, and the ability of the cell to differentiate and respond to its environment is largely due to this regulation. During elongation, for example, RNAP is known to momentarily halt in response to certain cellular signals, and this pause
Language: en
Pages: 436
Pages: 436
A detailed knowledge of the mechanisms underlying the transcriptional control of gene expression is of fundamental importance to many areas of contemporary biomedical research, ranging from understanding basic issues (such as control of embryonic development) to practical applications in industry and medicine. Although elementary concepts of gene expression are described
Language: en
Pages: 356
Pages: 356
Books about The Molecular Mechanisms of Transcription Termination and Pausing in the Escherichia Coli Threonine Operon Regulatory Region
Language: en
Pages: 183
Pages: 183
Limiting RNA polymerase II (Pol II) at various stages of the transcription cycle is critical for gene regulation, which often occurs during the elongation stage at promoter proximal pause sites and in gene bodies. To determine the distribution of Pol II along genes, I used nascent transcript analysis as a
Language: en
Pages: 165
Pages: 165
Cellular organisms use RNA polymerases (RNAPs) to express genes through the process of transcription. Accurate and timely RNA synthesis requires regulation of all steps of a complex transcription cycle, a regulatory framework involving the careful interplay of interactions between RNAP, the sequences and structure of template DNA and the nascent
Language: en
Pages: 331
Pages: 331
This book, written by expert scientists in the field, analyses how these diverse fields of research interact on a specific example - RNA polymerase. The book concentrates on RNA polymerases because they play a central role among all the other machines operating in the cell and are the target of
Language: en
Pages: 528
Pages: 528
Books about Transcription Termination by RNA Polymerase II
Language: en
Pages: 176
Pages: 176
In the yeast S. cerevisiae, the essential gene SEN1 encodes a superfamily I helicase that is required for terminating transcription of many non-coding RNA genes by RNA polymerase II. Sen1 also regulates transcription of some protein-coding genes by mechanisms such as attenuation and antisense transcription. Using a yeast genetic system,
Language: en
Pages:
Pages:
Books about Biomedical Index to PHS-supported Research