scholarly journals Metabolic engineering for plant natural products biosynthesis: new procedures, concrete achievements and remaining limits

2021 ◽  
Author(s):  
Vincent Courdavault ◽  
Sarah E. O'Connor ◽  
Michael K. Jensen ◽  
Nicolas Papon

The recent achievements in the transfer of biosynthetic pathways of plant natural products in heterologous organisms offer new perspectives towards the supply of these compounds through metabolic engineering approaches.

Author(s):  
Ahmad Bazli Ramzi ◽  
Syarul Nataqain Baharum ◽  
Hamidun Bunawan ◽  
Nigel S. Scrutton

Increasing demands for the supply of biopharmaceuticals have propelled the advancement of metabolic engineering and synthetic biology strategies for biomanufacturing of bioactive natural products. Using metabolically engineered microbes as the bioproduction hosts, a variety of natural products including terpenes, flavonoids, alkaloids, and cannabinoids have been synthesized through the construction and expression of known and newly found biosynthetic genes primarily from model and non-model plants. The employment of omics technology and machine learning (ML) platforms as high throughput analytical tools has been increasingly leveraged in promoting data-guided optimization of targeted biosynthetic pathways and enhancement of the microbial production capacity, thereby representing a critical debottlenecking approach in improving and streamlining natural products biomanufacturing. To this end, this mini review summarizes recent efforts that utilize omics platforms and ML tools in strain optimization and prototyping and discusses the beneficial uses of omics-enabled discovery of plant biosynthetic genes in the production of complex plant-based natural products by bioengineered microbes.


1991 ◽  
pp. 347-370
Author(s):  
Jonathan Gershenzon ◽  
David McCaskill ◽  
Jean Rajaonarivony ◽  
Charles Mihaliak ◽  
Frank Karp ◽  
...  

2020 ◽  
Vol 24 ◽  
pp. 100121 ◽  
Author(s):  
Rebecca P. Barone ◽  
David K. Knittel ◽  
Joey K. Ooka ◽  
Lexus N. Porter ◽  
Noa T. Smith ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (3) ◽  
pp. 719
Author(s):  
Meri Yulvianti ◽  
Christian Zidorn

Cyanogenic glycosides are an important and widespread class of plant natural products, which are however structurally less diverse than many other classes of natural products. So far, 112 naturally occurring cyanogenic glycosides have been described in the phytochemical literature. Currently, these unique compounds have been reported from more than 2500 plant species. Natural cyanogenic glycosides show variations regarding both the aglycone and the sugar part of the molecules. The predominant sugar moiety is glucose but many substitution patterns of this glucose moiety exist in nature. Regarding the aglycone moiety, four different basic classes can be distinguished, aliphatic, cyclic, aromatic, and heterocyclic aglycones. Our overview covers all cyanogenic glycosides isolated from plants and includes 33 compounds with a non-cyclic aglycone, 20 cyclopentane derivatives, 55 natural products with an aromatic aglycone, and four dihydropyridone derivatives. In the following sections, we will provide an overview about the chemical diversity known so far and mention the first source from which the respective compounds had been isolated. This review will serve as a first reference for researchers trying to find new cyanogenic glycosides and highlights some gaps in the knowledge about the exact structures of already described compounds.


2021 ◽  
pp. 100229
Author(s):  
Xiaoxi Zhu ◽  
Xiaonan Liu ◽  
Tian Liu ◽  
Yina Wang ◽  
Nida Ahmed ◽  
...  

2005 ◽  
Vol 8 (3) ◽  
pp. 280-291 ◽  
Author(s):  
Kirsten Jørgensen ◽  
Anne Vinther Rasmussen ◽  
Marc Morant ◽  
Allan Holm Nielsen ◽  
Nanna Bjarnholt ◽  
...  

Cancers ◽  
2021 ◽  
Vol 13 (11) ◽  
pp. 2678
Author(s):  
Karin Jöhrer ◽  
Serhat Sezai Ҫiҫek

A literature search on plant natural products with antimyeloma activity until the end of 2020 resulted in 92 compounds with effects on at least one human myeloma cell line. Compounds were divided in different compound classes and both their structure–activity-relationships as well as eventual correlations with the pathways described for Multiple Myeloma were discussed. Each of the major compound classes in this review (alkaloids, phenolics, terpenes) revealed interesting candidates, such as dioncophyllines, a group of naphtylisoquinoline alkaloids, which showed pronounced and selective induction of apoptosis when substituted in position 7 of the isoquinoline moiety. Interestingly, out of the phenolic compound class, two of the most noteworthy constituents belong to the relatively small subclass of xanthones, rendering this group a good starting point for possible further drug development. The class of terpenoids also provides noteworthy constituents, such as the highly oxygenated diterpenoid oridonin, which exhibited antiproliferative effects equal to those of bortezomib on RPMI8226 cells. Moreover, triterpenoids containing a lactone ring and/or quinone-like substructures, e.g., bruceantin, whitaferin A, withanolide F, celastrol, and pristimerin, displayed remarkable activity, with the latter two compounds acting as inhibitors of both NF-κB and proteasome chymotrypsin-like activity.


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