| Literature DB >> 29301376 |
Marcus Tullius Scotti1, Chonny Herrera-Acevedo2, Tiago Branquinho Oliveira3,4, Renan Paiva Oliveira Costa5, Silas Yudi Konno de Oliveira Santos6, Ricardo Pereira Rodrigues7, Luciana Scotti8, Fernando Batista Da-Costa9.
Abstract
The traditional work of a natural products researcher consists in large part of time-consuming experimental work, collecting biota to prepare and analyze extracts and to identify innovative metabolites. However, along this long scientific path, much information is lost or restricted to a specific niche. The large amounts of data already produced and the science of metabolomics reveal new questions: Are these compounds known or new? How fast can this information be obtained? To answer these and other relevant questions, an appropriate procedure to correctly store information on the data retrieved from the discovered metabolites is necessary. The SistematX (http://sistematx.ufpb.br) interface is implemented considering the following aspects: (a) the ability to search by structure, SMILES (Simplified Molecular-Input Line-Entry System) code, compound name and species; (b) the ability to save chemical structures found by searching; (c) compound data results include important characteristics for natural products chemistry; and (d) the user can find specific information for taxonomic rank (from family to species) of the plant from which the compound was isolated, the searched-for molecule, and the bibliographic reference and Global Positioning System (GPS) coordinates. The SistematX homepage allows the user to log into the data management area using a login name and password and gain access to administration pages. In this article, we introduced a modern and innovative web interface for the management of a secondary metabolite database. With its multiplatform design, it is able to be properly consulted via the internet and managed from any accredited computer. The interface provided by SistematX contains a wealth of useful information for the scientific community about natural products, highlighting the locations of species from which compounds are isolated.Entities:
Keywords: SistematX; data management; online web-based tool; secondary metabolites
Mesh:
Year: 2018 PMID: 29301376 PMCID: PMC6017134 DOI: 10.3390/molecules23010103
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1SistematX homepage with different search options: (A) by structure; (B) by Simplified Molecular-Input Line-Entry System (SMILES); (C) by compound name; and (D) by plant species.
Figure 2SistematX results page.
Figure 3SistematX screen for molecular data.
Figure 4SistematX creates new registers through an administrator: (A) login and password option; (B) structure view and (C) molecule selection.
Figure 5SistematX data management interface.
Summary of the Application Programming Interface (API) implemented by SistematX.
| API | Description | Engine |
|---|---|---|
| Allows drawing and visualization of chemical structures | ChemAxon | |
| Uses 2D drawing to generate a 3D representation of the molecule | ChemAxon | |
| Graphical visualization of 3D molecules with JavaScript | ChemDoodl | |
| Simplified Molecular Input Line Entry System | ChemAxon | |
| IUPAC Nomenclature | ChemAxon | |
| IUPAC International Chemical Identifier | ChemAxon | |
| InChIKey is a compact format of the InChI code | ChemAxon | |
| Chemical Abstracts Service Registry Number | ChemAxon | |
| Oxidation number (NOX) of an organic compound | ChemAxon | |
| Uses the mass of the most abundant isotope of each element | ChemAxon | |
| Uses the average atomic mass of each element | ChemAxon | |
| Can be inserted by the administrator or appears by clicking in the world map | Google Inc. | |
| Can be inserted by the administrator or appears by clicking in the world map | Google Inc. | |
| Using the latitude and longitude, appears an an approximate location of the specie | Google Inc. | |
| Uses the world map to possible to visualize the localization of the species | Google Inc. | |