Characterization of the phytochelatin synthase from the human parasitic nematode Ancylostoma ceylanicum

Mol Biochem Parasitol. 2013 Sep;191(1):1-6. doi: 10.1016/j.molbiopara.2013.07.003. Epub 2013 Jul 31.

Abstract

Hookworm disease is a debilitating worm infection that affects hundreds of millions of people. Despite the existence of anthelmintic drugs, reports have testified of a decrease in efficacy of these drugs. Therefore, it is imperative to find new drugs and drug targets for hookworm disease treatment. In this study we identify the gene encoding the phytochelatin synthase in the human hookworm, Ancylostoma ceylanicum (AcePCS). Phytochelatin synthase catalyzes the production of metal chelating peptides, the phytochelatins, from glutathione (GSH). In plants, algae, and fungi phytochelatin production is important for metal tolerance and detoxification. Phytochelatin synthase proteins also function in the elimination of xenobiotics by processing GSH S-conjugates. We found that in vitro AcePCS could both synthesize phytochelatins and hydrolyze a GSH S-conjugate. Interestingly, the enzyme works through a thiol-dependent and, notably, metal-independent mechanism for both transpeptidase (phytochelatin synthesis) and peptidase (hydrolysis of GSH S-conjugates) activities. AcePCS mRNAs are expressed in vivo throughout the life cycle of A. ceylanicum. Mature adult male hookworms isolated from the small intestines of their hosts displayed significantly enhanced expression of AcePCS with transcript levels 5-fold greater than other developmental forms. Although the role of AcePCS in A. ceylanicum biology has yet to be fully investigated the results reported here provide encouraging evidence of the potential that this enzyme holds as a target for new chemotherapeutic intervention.

Keywords: 2-mercaptoethanol; AcePCS; Ancylostoma ceylanicum phytochelatin synthase; EST; GSH; Glutathione; Hookworm; Metal toxicity; NTD; Neglected tropical disease; PCS; Phytochelatin; STNs; Xenobiotic metabolism; expressed sequence tag; glutathione; neglected tropical disease; phytochelatin synthase; qPCR; real-time quantitative PCR; soil-transmitted nematodes; β-ME.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Aminoacyltransferases / genetics
  • Aminoacyltransferases / metabolism*
  • Ancylostoma / enzymology*
  • Ancylostoma / genetics
  • Animals
  • DNA, Helminth / chemistry
  • DNA, Helminth / genetics
  • Gene Expression Profiling
  • Glutathione / metabolism
  • Molecular Sequence Data
  • Phytochelatins / metabolism*
  • Sequence Analysis, DNA

Substances

  • DNA, Helminth
  • Phytochelatins
  • Aminoacyltransferases
  • glutathione gamma-glutamylcysteinyltransferase
  • Glutathione

Associated data

  • GENBANK/KC914882