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Munirathinam, G.

Publications and source records attributed to Munirathinam, G..

2 recordsLinked to original sources

Identification and Characterization of a Novel Nematode Pan Allergen (NPA) from Wuchereria bancrofti and their Potential Role in Human Filarial Tropical Pulmonary Eosinophilia (TPE)

Tropical pulmonary eosinophilia (TPE) is a chronic respiratory syndrome associated with Lymphatic Filariasis (LF), a tropical parasitic infection of the human, transmitted by mosquitoes. A larval form of LF, the microfilariae trapped in the lungs of TPE subjects have a major role in initiating the TPE syndrome. To date, there are no reports on the potential allergen that is responsible for generating parasite-specific IgE in TPE. In this project, we screened a cDNA expression library of the microfilarial stages of Wuchereria bancrofti with monoclonal IgE antibodies prepared from subjects with clinical filarial infections. Our studies identified a novel molecule that showed significant sequence similarity to an allergen. A blast analysis showed the presence of similar proteins in a number of nematodes parasites. Thus, we named the molecule as Nematode Pan Allergen (NPA). Subsequent functional analysis showed that NPA is a potent allergen that can cause release of histamine from mast cells, induce secretion of proinflammatory cytokines from alveolar macrophages and promote accumulation of eosinophils, all of which occur in TPE lungs. Therefore, we believe that NPA may have a significant role in the pathology of the TPE syndrome.

microbiology↗

Localization and RNAi-driven inhibition of a Brugia malayi encoded Interleukin-5 Receptor Binding protein

A molecule termed BmIL5Rbp (aka Bm8757) was identified from Brugia malayi filarial worms and found to competitively inhibit human IL-5 binding to its human receptor. After the expression and purification of a recombinant BmIL5Rbp and generation of BmIL5Rbp-specific rabbit antibody, we localized the molecule on B. malayi worms through immunohistochemistry and immunoelectron microscopy. RNA interference was used to inhibit BmIL5Rbp mRNA and protein production. BmIL5Rbp was shown to localize to the cuticle of Brugia malayi and to be released in their excretory/secretory products. RNAi inhibited BmIL5Rbp mRNA production by 33% and reduced the surface protein expression by [~]50% and suppressed the release of BmIL5Rbp in the excretory/secretory products. RNAi has been used successfully to knock down the mRNA and protein expression of BmIL5Rbp in the early larval stages of B. malayi and provided a proof-of-principle for the local inhibition of the human IL5 receptor. These findings provide evidence that a parasite encoded IL5R antagonist could be utilized therapeutically.

pathology↗