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Genome Mining and Marine Microbial Natural Products

Genome Mining and Marine Microbial Natural Products
Author: Kui Hong
Publisher: MDPI
Total Pages: 202
Release: 2020-01-07
Genre: Science
ISBN: 3039280902

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Two review papers, eight research articles, and one brief report were published in this Special Issue. They showed the rich resources that are present within the genomes of marine microorganisms and discussed the use of recently developed tools and technologies to exploit this genetic richness. Examples include the rational supply of precursors according to the relevant biosynthetic pathway and stress driven discovery together with the use of histone deacetylase inhibitors to facilitate the discovery of new bioactive molecules with potential biopharmaceutical applications. We believe that the content of this Special Issue reflects the current state-of-the-art research in this area and highlights the interesting strategies that are being employed to uncover increasing numbers of exciting novel compounds for drug discovery from marine genetic resources.


Genome Mining and Marine Microbial Natural Products

Genome Mining and Marine Microbial Natural Products
Author: Alan Dobson
Publisher:
Total Pages: 202
Release: 2020
Genre: Biology (General)
ISBN: 9783039280919

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Two review papers, eight research articles, and one brief report were published in this Special Issue. They showed the rich resources that are present within the genomes of marine microorganisms and discussed the use of recently developed tools and technologies to exploit this genetic richness. Examples include the rational supply of precursors according to the relevant biosynthetic pathway and stress driven discovery together with the use of histone deacetylase inhibitors to facilitate the discovery of new bioactive molecules with potential biopharmaceutical applications. We believe that the content of this Special Issue reflects the current state-of-the-art research in this area and highlights the interesting strategies that are being employed to uncover increasing numbers of exciting novel compounds for drug discovery from marine genetic resources.


Genome Mining and Synthetic Biology in Marine Natural Products Discovery

Genome Mining and Synthetic Biology in Marine Natural Products Discovery
Author: Maria Costantini
Publisher: MDPI
Total Pages: 92
Release: 2021-09-03
Genre: Science
ISBN: 3036502548

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In recent years, marine genomics has become a rapidly growing field, helped by the large amount of information that is becoming available to the international scientific community. Taking into account the current excitement in the field of marine biotechnology, this Special Issue entitled “Genome Mining and Synthetic Biology in Marine Natural Product Discovery” aims to to assess the impact of these molecular approaches on the discovery of bioactive compounds from marine organisms. The term “genome mining” is used to identify all bioinformatic investigations aimed at detecting the biosynthetic pathways of bioactive natural products and their possible functional and chemical interactions. Several studies are now reporting on marine organisms. Oceans cover nearly 70% of the Earth’s surface and host a huge ecological, chemical, and biological diversity. The natural conditions of the sea favor, in marine organisms, the production of a large variety of novel molecules with great pharmaceutical potential. Marine organisms are unique in their structural and functional features compared to terrestrial ones. Innovation in this field is very rapid, as revealed by the funding of several Seventh Framework Programme (FP7) and Horizon 2020 projects under the topic “Blue Growth”, with the urgent goal of discovering new drugs.


Genome Mining and Synthetic Biology in Marine Natural Products Discovery

Genome Mining and Synthetic Biology in Marine Natural Products Discovery
Author: Maria Costantini
Publisher:
Total Pages: 92
Release: 2021
Genre:
ISBN: 9783036502557

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In recent years, marine genomics has become a growning rapidly field, helped by the large amount of information that is becoming available to the international scientific community. Taking into account the current excitement in the field of marine biotechnology, this Special Issue entitled “Genome Mining and Synthetic Biology in Marine Natural Product Discovery” aims to to assess the impact of these molecular approaches on the discovery of bioactive compounds from marine organisms. The term “genome mining” is used to identify all bioinformatic investigations aimed at detecting the biosynthetic pathways of bioactive natural products and their possible functional and chemical interactions. Several studies are now reporting on marine organisms. Oceans cover nearly 70% of the Earth's surface and host a huge ecological, chemical, and biological diversity. The natural conditions of the sea favor, in marine organisms, the production of a large variety of novel molecules with great pharmaceutical potential. Marine organisms are unique in their structural and functional features compared to terrestrial ones. Innovation in this field is very rapid, as revealed by the funding of several Seventh Framework Programme (FP7) and Horizon 2020 projects under the topic “Blue Growth”, with the urgent goal of discovering new drugs.


Natural Product Genomics and Metabolomics of Marine Bacteria

Natural Product Genomics and Metabolomics of Marine Bacteria
Author: Max Crüsemann
Publisher:
Total Pages: 0
Release: 2022
Genre:
ISBN: 9783036533001

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Marine organisms are a treasure trove for the discovery of novel natural products, and, thus, marine natural products have been a focus of interest for researchers for decades. Some marine bacteria are prolific producers of natural products, occurring either free-living or, as recently shown, in symbiosis with marine animals. Recent advances in DNA sequencing have led to an enormous increase in published bacterial genomes and bioinformatics tools to analyze natural product biosynthetic potential by various "genome mining" approaches. Similarly, analytical NMR and MS methods for the characterization and comparison of metabolomes of natural product producers have advanced. Novel interdisciplinary approaches combine genomics and metabolomics data for accelerated and targeted natural product discovery. This Special Issue invites articles from both genomics- and metabolomics-driven studies on marine bacteria with a focus on natural product discovery and characterization. We particularly welcome articles that combine genomics and metabolomic approaches for the dereplication and characterization of marine bacterial natural products.


From Molecules to Genes and Back Again

From Molecules to Genes and Back Again
Author: Michelle Antoinette Schorn
Publisher:
Total Pages: 239
Release: 2018
Genre:
ISBN:

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Nature has created elegant and efficient ways of assembling a wide variety of diverse chemical scaffolds. Microbes are prolific producers of these secondary metabolites, which can have profound bioactivities and be harnessed for use in medicine. Within their genomes, microbes possess the blueprints for making natural products, and recent advances in high-throughput DNA sequencing have revealed a much larger repertoire of specialized chemistry than what can be observed in the lab. This bacterial 'dark matter' has the potential to contain the instructions for making countless new chemical scaffolds and represents an untapped source for drug discovery. Connecting secondary metabolite compounds with their biosynthetic gene clusters can inform novel biosynthetic transformations, provide a renewable source of promising bioactive compounds, and inspire synthetic biology approaches to assembling new molecules. Chapter 2 of this dissertation connects two pharmaceutically relevant natural products with their corresponding biosynthetic gene clusters. The epoxyketone proteasome inhibitors epoxomicin and eponemycin are naturally produced by actinomycete bacteria, and whole genome sequencing revealed their genetic underpinnings and native resistance mechanism. This work represents the first elucidation of biosynthetic gene clusters for epoxyketone proteasome inhibitors. Chapter 3 takes a wider lens to examine an understudied group of bacteria: the rare marine actinomycetes. Whole genome sequencing of a group of rare marine actinomycetes revealed an incredible wealth of biosynthetic potential and diversity not yet represented in current sequencing databases. This study establishes rare marine actinomycetes as a group worthy of further exploration for genome mining and drug discovery. Chapter 4 investigates a more complex system with a focus on uncultivatable cyanobacterial sponge symbionts. Previous work showed that the genomes of these symbionts contained the genes necessary to produce environmentally relevant poly-brominated diphenyl ethers (PBDEs). In assembling high quality draft genomes of two symbionts of distinct sponges, their full secondary metabolite potential was revealed. Additionally, genome mining led to the identification of two novel dysinosin molecules, representing the first example of mining for gene clusters in a metagenome assembled genome leading to new chemistry.


Marine Biotechnology in the Twenty-First Century

Marine Biotechnology in the Twenty-First Century
Author: National Research Council
Publisher: National Academies Press
Total Pages: 130
Release: 2002-05-29
Genre: Science
ISBN: 0309169712

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Dramatic developments in understanding the fundamental underpinnings of life have provided exciting opportunities to make marine bioproducts an important part of the U.S. economy. Several marine based pharmaceuticals are under active commercial development, ecosystem health is high on the public's list of concerns, and aquaculture is providing an ever greater proportion of the seafood on our tables. Nevertheless, marine biotechnology has not yet caught the public's, or investor's, attention. Two workshops, held in October 1999 and November 2001 at the National Academies, were successful in highlighting new developments and opportunities in environmental and biomedical applications of marine biotechnology, and also in identifying factors that are impeding commercial exploitation of these products. This report includes a synthesis of the 2001 sessions addressing drug discovery and development, applications of genomics and proteomics to marine biotechnology, biomaterials and bioengineering, and public policy and essays contributed by the workshop speakers.


Mass Spectrometry-guided Genome Mining of Peptidic and Glycosylated Microbial Natural Products

Mass Spectrometry-guided Genome Mining of Peptidic and Glycosylated Microbial Natural Products
Author: Roland David Kersten
Publisher:
Total Pages: 233
Release: 2013
Genre:
ISBN: 9781303212000

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Scientific progress in organic synthesis, biochemistry and biology and cures to many infectious diseases and cancer rely on discovery of microbial natural products and their biosynthetic pathways. `Omics' approaches such as genome mining have opened new opportunities for natural product discovery within the last decade as ~90% of pathways in microbial genomes are uncharacterized in their products. Genome mining for natural product discovery can be defined as the connection of a natural product (chemotype) with its biosynthetic genes (genotype) by applied biosynthetic knowledge. Traditional genome mining approaches are in silico-guided approaches in which the isolation of a new natural product is guided by bioinformatic predictions from a target cryptic gene cluster. The problem of in silico-guided genome mining in natural product discovery is its low-throughput rate as only one pathway is characterized per experiment. In this dissertation, mass spectrometry (MS)-guided genome mining approaches are introduced which rapidly connect a natural product with its biosynthetic genes by matching de novo tandem MS structures of biosynthetic building blocks such as amino acids and sugars to metabolite structures predicted from microbial genomes. As MS guided genome mining starts at the chemotype level by e.g. liquid chromatography-tandem mass spectrometry analysis of a microbial extract and subsequently connects putative natural products with their gene clusters, it has the potential for automation. In Chapter 2, peptidogenomics is introduced as a MS-guided genome mining approach for characterization of ribosomal and nonribosomal peptide chemotypes and their corresponding genotypes. Peptidogenomics characterized ten new peptide chemo- and genotypes from Streptomyces cultures including lanthipeptides, lassopeptides, linaridins and lipopeptides. In Chapter 3, a combination of imaging mass spectrometry, tandem MS and genome mining characterized the biosynthetic pathway of the didemnin anti-cancer agents in the marine alpha-proteobacterium Tistrella mobilis. In Chapter 4, glycogenomics is introduced as a MS-guided genome mining approach to connect chemo- and genotypes of glycosylated natural products. Glycogenomics enabled the discovery of putative arenimycin B, a glycosylated aromatic polyketide from the marine actinobacterium Salinispora arenicola and its biosynthetic pathway. In Chapter 5, bioactivity-guided genome mining combined with genetic knockouts and glycogenomics characterized the biosynthetic gene cluster of the lomaiviticins anti cancer agents in the marine actinobacterium Salinispora tropica.


Natural Products from Marine Microorganisms

Natural Products from Marine Microorganisms
Author: Xian-Wen Yang
Publisher: Frontiers Media SA
Total Pages: 142
Release: 2020-01-22
Genre:
ISBN: 2889633586

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Natural products continue to serve as sources for the development of new medicines. There is currently a revival of interest in the discovery of bioactive compounds with new chemical structures from natural sources, largely due to the fact that synthetic libraries have not yielded the expected number of developmental candidates in the pharmaceutical industry during the last decade. In addition, the emergence of clinically relevant pathogens that are becoming increasingly resistant to currently used medicines strengthens the notion that natural product research is urgently required. Considering the fact that almost 10% of bioactive compounds are of microbial origin, and that marine microorganisms are relatively poorly studied compared to their terrestrial relatives, marine microorganisms are regarded as the most potential-laden resource for drug discovery.