Minor snake venom proteins: Structure, function and potential applications

Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of th...

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Published in:Biochimica et biophysica acta. General subjects Vol. 1861; no. 4; pp. 824 - 838
Main Authors: Boldrini-França, Johara, Cologna, Camila Takeno, Pucca, Manuela Berto, Bordon, Karla de Castro Figueiredo, Amorim, Fernanda Gobbi, Anjolette, Fernando Antonio Pino, Cordeiro, Francielle Almeida, Wiezel, Gisele Adriano, Cerni, Felipe Augusto, Pinheiro-Junior, Ernesto Lopes, Shibao, Priscila Yumi Tanaka, Ferreira, Isabela Gobbo, de Oliveira, Isadora Sousa, Cardoso, Iara Aimê, Arantes, Eliane Candiani
Format: Journal Article
Language:English
Published: Netherlands Elsevier B.V 01.04.2017
Subjects:
ISSN:0304-4165, 1872-8006
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Abstract Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of them have already been used for different purposes. Nevertheless, most of the minor snake venom protein classes remain poorly explored, even presenting potential application in diverse areas. The main difficulty in studying these proteins lies on the impossibility of obtaining sufficient amounts of them for a comprehensive investigation. The advent of more sensitive techniques in the last few years allowed the discovery of new venom components and the in-depth study of some already known minor proteins. This review summarizes information regarding some structural and functional aspects of low abundant snake venom proteins classes, such as growth factors, hyaluronidases, cysteine-rich secretory proteins, nucleases and nucleotidases, cobra venom factors, vespryns, protease inhibitors, antimicrobial peptides, among others. Some potential applications of these molecules are discussed herein in order to encourage researchers to explore the full venom repertoire and to discover new molecules or applications for the already known venom components. •Minor snake venom protein classes and their potential applications are still poorly studied;•Understanding snake venoms diversity is important for drug discovery and to comprehend the pathophysiology of snake bites.•Minor snake venom proteins may provide important information on evolutionary processes that generated snake venom repertories.
AbstractList Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of them have already been used for different purposes. Nevertheless, most of the minor snake venom protein classes remain poorly explored, even presenting potential application in diverse areas. The main difficulty in studying these proteins lies on the impossibility of obtaining sufficient amounts of them for a comprehensive investigation. The advent of more sensitive techniques in the last few years allowed the discovery of new venom components and the in-depth study of some already known minor proteins. This review summarizes information regarding some structural and functional aspects of low abundant snake venom proteins classes, such as growth factors, hyaluronidases, cysteine-rich secretory proteins, nucleases and nucleotidases, cobra venom factors, vespryns, protease inhibitors, antimicrobial peptides, among others. Some potential applications of these molecules are discussed herein in order to encourage researchers to explore the full venom repertoire and to discover new molecules or applications for the already known venom components.Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of them have already been used for different purposes. Nevertheless, most of the minor snake venom protein classes remain poorly explored, even presenting potential application in diverse areas. The main difficulty in studying these proteins lies on the impossibility of obtaining sufficient amounts of them for a comprehensive investigation. The advent of more sensitive techniques in the last few years allowed the discovery of new venom components and the in-depth study of some already known minor proteins. This review summarizes information regarding some structural and functional aspects of low abundant snake venom proteins classes, such as growth factors, hyaluronidases, cysteine-rich secretory proteins, nucleases and nucleotidases, cobra venom factors, vespryns, protease inhibitors, antimicrobial peptides, among others. Some potential applications of these molecules are discussed herein in order to encourage researchers to explore the full venom repertoire and to discover new molecules or applications for the already known venom components.
Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of them have already been used for different purposes. Nevertheless, most of the minor snake venom protein classes remain poorly explored, even presenting potential application in diverse areas. The main difficulty in studying these proteins lies on the impossibility of obtaining sufficient amounts of them for a comprehensive investigation. The advent of more sensitive techniques in the last few years allowed the discovery of new venom components and the in-depth study of some already known minor proteins. This review summarizes information regarding some structural and functional aspects of low abundant snake venom proteins classes, such as growth factors, hyaluronidases, cysteine-rich secretory proteins, nucleases and nucleotidases, cobra venom factors, vespryns, protease inhibitors, antimicrobial peptides, among others. Some potential applications of these molecules are discussed herein in order to encourage researchers to explore the full venom repertoire and to discover new molecules or applications for the already known venom components.
Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug development and diagnostic tests for certain diseases. The most abundant toxins have been extensively studied in the last decades and some of them have already been used for different purposes. Nevertheless, most of the minor snake venom protein classes remain poorly explored, even presenting potential application in diverse areas. The main difficulty in studying these proteins lies on the impossibility of obtaining sufficient amounts of them for a comprehensive investigation. The advent of more sensitive techniques in the last few years allowed the discovery of new venom components and the in-depth study of some already known minor proteins. This review summarizes information regarding some structural and functional aspects of low abundant snake venom proteins classes, such as growth factors, hyaluronidases, cysteine-rich secretory proteins, nucleases and nucleotidases, cobra venom factors, vespryns, protease inhibitors, antimicrobial peptides, among others. Some potential applications of these molecules are discussed herein in order to encourage researchers to explore the full venom repertoire and to discover new molecules or applications for the already known venom components. •Minor snake venom protein classes and their potential applications are still poorly studied;•Understanding snake venoms diversity is important for drug discovery and to comprehend the pathophysiology of snake bites.•Minor snake venom proteins may provide important information on evolutionary processes that generated snake venom repertories.
Author de Oliveira, Isadora Sousa
Amorim, Fernanda Gobbi
Anjolette, Fernando Antonio Pino
Cerni, Felipe Augusto
Pinheiro-Junior, Ernesto Lopes
Cardoso, Iara Aimê
Pucca, Manuela Berto
Cologna, Camila Takeno
Cordeiro, Francielle Almeida
Shibao, Priscila Yumi Tanaka
Wiezel, Gisele Adriano
Ferreira, Isabela Gobbo
Boldrini-França, Johara
Arantes, Eliane Candiani
Bordon, Karla de Castro Figueiredo
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  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
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  givenname: Camila Takeno
  surname: Cologna
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  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
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  surname: Anjolette
  fullname: Anjolette, Fernando Antonio Pino
  email: fanjolette@yahoo.com.br
  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
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  givenname: Francielle Almeida
  surname: Cordeiro
  fullname: Cordeiro, Francielle Almeida
  email: fran_acordeiro@hotmail.com
  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
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  givenname: Gisele Adriano
  surname: Wiezel
  fullname: Wiezel, Gisele Adriano
  email: gisele.wiezel@gmail.com
  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
– sequence: 9
  givenname: Felipe Augusto
  surname: Cerni
  fullname: Cerni, Felipe Augusto
  email: felipe_cerni@hotmail.com
  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
– sequence: 10
  givenname: Ernesto Lopes
  surname: Pinheiro-Junior
  fullname: Pinheiro-Junior, Ernesto Lopes
  email: ernesto.pinheiro@usp.br
  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
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  givenname: Priscila Yumi Tanaka
  surname: Shibao
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  surname: Arantes
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  organization: School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil
BackLink https://www.ncbi.nlm.nih.gov/pubmed/28012742$$D View this record in MEDLINE/PubMed
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Snippet Snake venoms present a great diversity of pharmacologically active compounds that may be applied as research and biotechnological tools, as well as in drug...
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SubjectTerms active ingredients
Animals
antimicrobial peptides
diagnostic techniques
Drug discovery
drugs
growth factors
medicinal properties
nucleases
nucleotidases
proteinase inhibitors
proteins
Proteins - chemistry
Proteins - metabolism
researchers
Snake venoms
Snake Venoms - chemistry
Snake Venoms - metabolism
snakes
Toxins
Toxins, Biological - chemistry
Toxins, Biological - metabolism
venoms
Title Minor snake venom proteins: Structure, function and potential applications
URI https://dx.doi.org/10.1016/j.bbagen.2016.12.022
https://www.ncbi.nlm.nih.gov/pubmed/28012742
https://www.proquest.com/docview/1859755144
https://www.proquest.com/docview/2000349125
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