Literature DB >> 25436594

The CAP protein superfamily: function in sterol export and fungal virulence.

Roger Schneiter, Antonio Di Pietro.   

Abstract

CAP superfamily proteins, also known as sperm-coating proteins, are found in all kingdoms of life and have been implicated in a variety of physiological contexts, including immune defense in plants and mammals, sperm maturation and fertilization, fungal virulence, and toxicity of insect and reptile venoms as well as prostate and brain cancer. CAP family members are mostly secreted glycoproteins that are highly stable in the extracellular fluid. All members of the superfamily share a common CAP domain of approximately 150 amino acids, which adopts a unique α-β-α sandwich fold. The conserved structure suggests that CAP proteins exert fundamentally similar functions. However, the molecular mode of action of this protein family has remained enigmatic. The budding yeast Saccharomyces cerevisiae has three CAP family members designated Pry (pathogen related in yeast), and recent evidence indicates that they act as sterol-binding and export proteins. Expression of the mammalian CAP protein CRISP2, which binds sterols in vitro, complements the sterol export defect of a yeast pry mutant, suggesting that sterol binding and export is conserved among different CAP family members. Collectively, these observations suggest that CAP family members constitute a novel class of secreted extracellular sterol-binding proteins. A ligand-binding activity of the CAP domain could explain many of the biological activities attributed to these proteins. For example, the strong induction of plant pathogenesis-related 1 protein upon exposure to pathogens may serve to inhibit pathogen proliferation by extracting sterols from the pathogen membrane. Similarly, the presence of these proteins in the venom of toxic insects and reptiles or in the secretome of pathogenic fungi might inflict damage by sequestering sterols or related small hydrophobic compounds from the host tissue.

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Year:  2013        PMID: 25436594     DOI: 10.1515/bmc-2013-0021

Source DB:  PubMed          Journal:  Biomol Concepts        ISSN: 1868-5021


  27 in total

1.  Human CLEC18 Gene Cluster Contains C-type Lectins with Differential Glycan-binding Specificity.

Authors:  Ya-Lang Huang; Feng-Shuo Pai; Yun-Ting Tsou; Hsien-Chen Mon; Tsui-Ling Hsu; Chung-Yi Wu; Teh-Ying Chou; Wen-Bin Yang; Chung-Hsuan Chen; Chi-Huey Wong; Shie-Liang Hsieh
Journal:  J Biol Chem       Date:  2015-07-13       Impact factor: 5.157

2.  Tracing the Evolutionary History of the CAP Superfamily of Proteins Using Amino Acid Sequence Homology and Conservation of Splice Sites.

Authors:  Anup Abraham; Douglas E Chandler
Journal:  J Mol Evol       Date:  2017-10-25       Impact factor: 2.395

3.  The pathogen-related yeast protein Pry1, a member of the CAP protein superfamily, is a fatty acid-binding protein.

Authors:  Rabih Darwiche; Laurent Mène-Saffrané; David Gfeller; Oluwatoyin A Asojo; Roger Schneiter
Journal:  J Biol Chem       Date:  2017-04-01       Impact factor: 5.157

4.  Plant pathogenesis-related proteins of the cacao fungal pathogen Moniliophthora perniciosa differ in their lipid-binding specificities.

Authors:  Rabih Darwiche; Ola El Atab; Renata M Baroni; Paulo J P L Teixeira; Jorge M C Mondego; Gonçalo A G Pereira; Roger Schneiter
Journal:  J Biol Chem       Date:  2017-10-17       Impact factor: 5.157

5.  Human rs75776403 polymorphism links differential phenotypic and clinical outcomes to a CLEC18A p.T151M-driven multiomics.

Authors:  Yu-Wen Hsu; Henry Sung-Ching Wong; Wan-Chen Huang; Yi-Hung Yeh; Chwan-Deng Hsiao; Wei-Chiao Chang; Shie-Liang Hsieh
Journal:  J Biomed Sci       Date:  2022-06-18       Impact factor: 12.771

6.  The caveolin-binding motif of the pathogen-related yeast protein Pry1, a member of the CAP protein superfamily, is required for in vivo export of cholesteryl acetate.

Authors:  Vineet Choudhary; Rabih Darwiche; David Gfeller; Vincent Zoete; Olivier Michielin; Roger Schneiter
Journal:  J Lipid Res       Date:  2014-03-05       Impact factor: 5.922

7.  Moniliophthora roreri, causal agent of cacao frosty pod rot.

Authors:  Bryan A Bailey; Harry C Evans; Wilbert Phillips-Mora; Shahin S Ali; Lyndel W Meinhardt
Journal:  Mol Plant Pathol       Date:  2018-02-15       Impact factor: 5.663

8.  Adaptive evolution of Moniliophthora PR-1 proteins towards its pathogenic lifestyle.

Authors:  Adrielle A Vasconcelos; Juliana José; Paulo M Tokimatu; Antonio P Camargo; Paulo J P L Teixeira; Daniela P T Thomazella; Paula F V do Prado; Gabriel L Fiorin; Juliana L Costa; Antonio Figueira; Marcelo F Carazzolle; Gonçalo A G Pereira; Renata M Baroni
Journal:  BMC Ecol Evol       Date:  2021-05-14

9.  Shared and tailored common bean transcriptomic responses to combined fusarium wilt and water deficit.

Authors:  Susana T Leitão; Carmen Santos; Susana de Sousa Araújo; Diego Rubiales; Maria Carlota Vaz Patto
Journal:  Hortic Res       Date:  2021-07-01       Impact factor: 6.793

10.  Pathogenesis-Related Genes of PR1, PR2, PR4, and PR5 Families Are Involved in the Response to Fusarium Infection in Garlic (Allium sativum L.).

Authors:  Olga K Anisimova; Anna V Shchennikova; Elena Z Kochieva; Mikhail A Filyushin
Journal:  Int J Mol Sci       Date:  2021-06-22       Impact factor: 5.923

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