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      Plasmodium falciparum merozoite surface protein 3: oligomerization, self-assembly, and heme complex formation.

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          Abstract

          Merozoite surface protein 3 of Plasmodium falciparum, a 40-kDa protein that also binds heme, has been biophysically characterized for its tendency to form highly elongated oligomers. This study aims to systematically analyze the regions in MSP3 sequence involved in oligomerization and correlate its aggregation tendency with its high affinity for binding with heme. Through size exclusion chromatography, dynamic light scattering, and transmission electron microscopy, we have found that MSP3, previously known to form elongated oligomers, actually forms self-assembled filamentous structures that possess amyloid-like characteristics. By expressing different regions of MSP3, we observed that the previously described leucine zipper region at the C terminus of MSP3 may not be the only structural element responsible for oligomerization and that other peptide segments like MSP3(192-196) (YILGW) may also be required. MSP3 aggregates on incubation were transformed to long unbranched amyloid fibrils. Using immunostaining methods, we found that 5-15-μm-long fibrillar structures stained by anti-MSP3 antibodies were attached to the merozoite surface and also associated with erythrocyte membrane. We also found MSP3 to bind several molecules of heme by UV spectrophotometry, HPLC, and electrophoresis. This study suggested that its ability to bind heme is somehow related to its inherent characteristics to form oligomers. Moreover, heme interaction with a surface protein like MSP3, which does not participate in hemozoin formation, may suggest a protective role against the heme released from unprocessed hemoglobin released after schizont egress. These studies point to the other roles that MSP3 may play during the blood stages of the parasite, in addition to be an important vaccine candidate.

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          Author and article information

          Journal
          J. Biol. Chem.
          The Journal of biological chemistry
          1083-351X
          0021-9258
          Feb 14 2014
          : 289
          : 7
          Affiliations
          [1 ] From the Malaria Research Group, International Centre for Genetic Engineering and Biotechnology, New Delhi 110067, India.
          Article
          M113.520239
          10.1074/jbc.M113.520239
          3924255
          24362023
          7b014961-dd48-4171-850f-2bc1df871ae2
          History

          Amyloid,Erythrocyte,Heme,Infectious Diseases,Malaria
          Amyloid, Erythrocyte, Heme, Infectious Diseases, Malaria

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