Structural basis for selective targeting of leishmanial ribosomes: Aminoglycoside derivatives as promising therapeutics

Moran Shalev, Haim Rozenberg, Boris Smolkin, Abedelmajeed Nasereddin, Dmitry Kopelyanskiy, Valery Belakhov, Thomas Schrepfer, Jochen Schacht, Charles L. Jaffe, Noam Adir, Timor Baasov*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Leishmaniasis comprises an array of diseases caused by pathogenic species of Leishmania, resulting in a spectrum of mild to life-threatening pathologies. Currently available therapies for leishmaniasis include a limited selection of drugs. This coupled with the rather fast emergence of parasite resistance, presents a dire public health concern. Paromomycin (PAR), a broad-spectrum aminoglycoside antibiotic, has been shown in recent years to be highly efficient in treating visceral leishmaniasis (VL)-the lifethreatening form of the disease. While much focus has been given to exploration of PAR activities in bacteria, its mechanism of action in Leishmania has received relatively little scrutiny and has yet to be fully deciphered. In the present study we present an X-ray structure of PAR bound to rRNA model mimicking its leishmanial binding target, the ribosomal Asite. We also evaluate PARinhibitory actions on leishmanial growth and ribosome function, as well as effects on auditory sensory cells, by comparing several structurally related natural and synthetic aminoglycoside derivatives. The results provide insights into the structural elements important for aminoglycoside inhibitory activities and selectivity for leishmanial cytosolic ribosomes, highlighting a novel synthetic derivative, compound 3, as a prospective therapeutic candidate for the treatment of VL.

Original languageEnglish
Pages (from-to)8601-8613
Number of pages13
JournalNucleic Acids Research
Volume43
Issue number17
DOIs
StatePublished - 30 Sep 2015

Bibliographical note

Publisher Copyright:
© The Author(s) 2015.

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