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Transsulfuration is an active pathway for cysteine biosynthesis in Trypanosoma rangeli.

Authors :
Romero, Ibeth
Téllez, Jair
Yamanaka, Lais Eiko
Steindel, Mario
Romanha, Alvaro José
Grisard, Edmundo Carlos
Source :
Parasites & Vectors; 2014, Vol. 7 Issue 1, p1-21, 21p
Publication Year :
2014

Abstract

Background Cysteine, a sulfur-containing amino acid, plays an important role in a variety of cellular functions such as protein biosynthesis, methylation, and polyamine and glutathione syntheses. In trypanosomatids, glutathione is conjugated with spermidine to form the specific antioxidant thiol trypanothione (T[SH]<subscript>2</subscript>) that plays a central role in maintaining intracellular redox homoeostasis and providing defence against oxidative stress. Methods We cloned and characterised genes coding for a cystathionine β-synthase (CβS) and cysteine synthase (CS), key enzymes of the transsulfuration and assimilatory pathways, respectively, from the hemoflagellate protozoan parasite Trypanosoma rangeli. Results Our results show that T. rangeli CβS (TrCβS), similar to its homologs in T. cruzi, contains the catalytic domain essential for enzymatic activity. Unlike the enzymes in bacteria, plants, and other parasites, T. rangeli CS lacks two of the four lysine residues (Lys<superscript>26</superscript> and Lys<superscript>199</superscript>) required for activity. Enzymatic studies using T. rangeli extracts confirmed the absence of CS activity but confirmed the expression of an active CβS. Moreover, CβS biochemical assays revealed that the T. rangeli CβS enzyme also has serine sulfhydrylase activity. Conclusion These findings demonstrate that the RTS pathway is active in T. rangeli, suggesting that this may be the only pathway for cysteine biosynthesis in this parasite. In this sense, the RTS pathway appears to have an important functional role during the insect stage of the life cycle of this protozoan parasite. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17563305
Volume :
7
Issue :
1
Database :
Complementary Index
Journal :
Parasites & Vectors
Publication Type :
Academic Journal
Accession number :
96050022
Full Text :
https://doi.org/10.1186/1756-3305-7-197