Affiliation:
1. Department of Molecular and Cell Biology, Boston University Goldman School of Dental Medicine, Boston, Massachusetts, USA
2. Department of Microbiology, Boston University School of Medicine, Boston, Massachusetts, USA
Abstract
ABSTRACT
Cysts of
Giardia lamblia
and
Entamoeba histolytica
and oocysts of
Toxoplasma gondii
and
Cryptosporidium parvum
are the infectious and sometimes diagnostic forms of these parasites. To discover the structural components of cyst and oocyst walls, we have developed strategies based upon a few simple assumptions. Briefly, the most abundant wall proteins are identified by monoclonal antibodies or mass spectrometry. Structural components include a sugar polysaccharide (chitin for
Entamoeba
, β-1,3-linked glucose for
Toxoplasma
, and β-1,3-linked GalNAc for
Giardia
) and/or acid-fast lipids (
Toxoplasma
and
Cryptosporidium
). Because
Entamoeba
cysts and
Toxoplasma
oocysts are difficult to obtain, studies of walls of nonhuman pathogens (
E. invadens
and
Eimeria
, respectively) accelerate discovery. Biochemical methods to dissect fungal walls work well for cyst and oocyst walls, although the results are often unexpected. For example, echinocandins, which inhibit glucan synthases and kill fungi, arrest the development of oocyst walls and block their release into the intestinal lumen.
Candida
walls are coated with mannans, while
Entamoeba
cysts are coated in a dextran-like glucose polymer. Models for cyst and oocyst walls derive from their structural components and organization within the wall. Cyst walls are composed of chitin fibrils and lectins that bind chitin (
Entamoeba
) or fibrils of the β-1,3-GalNAc polymer and lectins that bind the polymer (
Giardia
). Oocyst walls of
Toxoplasma
have two distinct layers that resemble those of fungi (β-1,3-glucan in the inner layer) or mycobacteria (acid-fast lipids in the outer layer). Oocyst walls of
Cryptosporidium
have a rigid bilayer of acid-fast lipids and inner layer of oocyst wall proteins.
Publisher
American Society for Microbiology
Subject
Molecular Biology,General Medicine,Microbiology
Cited by
70 articles.
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