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Microbial structured RNA
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Ebook "Synthetic biology" provides a comprehensive, up-to-date overview of the opportunities and challenges of the complex field of synthetic biology, which combines various scientific disciplines. The emerging field of synthetic biology employs biotechnological approaches to recreate and enhance basic biological structures, intracellular processes and whole organisms. The book addresses a broad range of topics, including redesigning complex metabolic pathways, DNA/RNA and protein engineering, as well as novel synthetic biomaterials.
371p
tracanhphuonghoa1007
22-04-2024
6
1
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Structured RNAs play varied bioregulatory roles within microbes. To date, hundreds of candidate structured RNAs have been predicted using informatic approaches that search for motif structures in genomic sequence data. The human microbiome contains thousands of species and strains of microbes.
16p
viarchimedes
26-01-2022
9
1
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Chapter 10 - Molecular biology of the gene. The main contents of this chapter include all of the following: The structure of the genetic material, DNA replication, the flow of genetic information from DNA to RNA to protein, microbial genetics.
113p
tradaviahe14
27-01-2021
10
2
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Chapter 10 - Molecular biology of the gene. The main contents of this chapter include all of the following: The structure of the genetic material, DNA replication, the flow of genetic information from DNA to RNA to protein, microbial genetics.
129p
shiwo_ding2
03-04-2019
21
2
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The term "chromatin remodelling" is widely used to describe changes in chromatin structure which is controlled by histone-modifying enzymes, chromatin remodelling complexes, non-histone DNA-binding proteins and noncoding RNAs. Many human diseases such as cancer, various genetic syndromes, autism and infectious disease have been linked to the disruption of these control processes by genetic, environmental or microbial factors.
234p
haiduong_1
24-04-2013
72
5
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GE23077, a novel microbial metabolite recently isolated from Actinomadurasp. culture media, is a potent and selective inhibitor of bacterial RNApolymerase (RNAP). It inhibitsGram-positive (Bacillus subtilis) andGram-negative (Escherichia coli)RNAPs with IC50 values (i.e. the concen-tration at which the enzyme activity is inhibited by 50%) in the 10 )8 Mrange, whereas it is not active onE. coliDNA polymerase or on eukaryotic (wheat germ) RNAP II (IC50 values10 )4 Min both cases).
0p
awards
05-04-2013
49
1
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