Literature DB >> 19624749

Covalently linked cell wall proteins of Candida albicans and their role in fitness and virulence.

Frans M Klis1, Grazyna J Sosinska, Piet W J de Groot, Stanley Brul.   

Abstract

The cell wall of Candida albicans consists of an internal skeletal layer and an external protein coat. This coat has a mosaic-like nature, containing c. 20 different protein species covalently linked to the skeletal layer. Most of them are GPI proteins. Coat proteins vary widely in function. Many of them are involved in the primary interactions between C. albicans and the host and mediate adhesive steps or invasion of host cells. Others are involved in biofilm formation and cell-cell aggregation. They further include iron acquisition proteins, superoxide dismutases, and yapsin-like aspartic proteases. In addition, several covalently linked carbohydrate-active enzymes are present, whose precise functions remain hitherto largely elusive. The expression levels of the genes that encode covalently linked cell wall proteins (CWPs) can vary enormously. They depend on the mode of growth and the combined inputs of several signaling pathways that sense environmental conditions. This is reflected in the unusually long intergenic regions of most of these genes. Finally, the precise location of several covalently linked CWPs is temporally and spatially regulated. We conclude that covalently linked CWPs of C. albicans play a crucial role in fitness and virulence and that their expression is tightly controlled.

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Year:  2009        PMID: 19624749     DOI: 10.1111/j.1567-1364.2009.00541.x

Source DB:  PubMed          Journal:  FEMS Yeast Res        ISSN: 1567-1356            Impact factor:   2.796


  60 in total

1.  Proteolytic cleavage of covalently linked cell wall proteins by Candida albicans Sap9 and Sap10.

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2.  A domain-centric analysis of oomycete plant pathogen genomes reveals unique protein organization.

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Journal:  Plant Physiol       Date:  2010-11-30       Impact factor: 8.340

3.  Evidence for the presence of proteolytically active secreted aspartic proteinase 1 of Candida parapsilosis in the cell wall.

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Review 4.  On the evolution of fungal and yeast cell walls.

Authors:  Xianfa Xie; Peter N Lipke
Journal:  Yeast       Date:  2010-08       Impact factor: 3.239

5.  Transcriptional landscape of trans-kingdom communication between Candida albicans and Streptococcus gordonii.

Authors:  L C Dutton; K H Paszkiewicz; R J Silverman; P R Splatt; S Shaw; A H Nobbs; R J Lamont; H F Jenkinson; M Ramsdale
Journal:  Mol Oral Microbiol       Date:  2015-07-07       Impact factor: 3.563

6.  Role of the Inositol Polyphosphate Multikinase Ipk2 in Regulation of Hyphal Development, Calcium Signaling and Secretion in Candida albicans.

Authors:  Jianrong Li; Bing Zhang; Tianyu Ma; Honggang Wang; Biao Zhang; Qilin Yu; Mingchun Li
Journal:  Mycopathologia       Date:  2017-05-13       Impact factor: 2.574

7.  Unmasking fungal pathogens by studying MAPK-dependent cell wall regulation in Candida albicans.

Authors:  Paul J Cullen; Mira Edgerton
Journal:  Virulence       Date:  2016-04-18       Impact factor: 5.882

Review 8.  Amyloid Structures as Biofilm Matrix Scaffolds.

Authors:  Agustina Taglialegna; Iñigo Lasa; Jaione Valle
Journal:  J Bacteriol       Date:  2016-09-09       Impact factor: 3.490

9.  Abolishing Cell Wall Glycosylphosphatidylinositol-Anchored Proteins in Candida albicans Enhances Recognition by Host Dectin-1.

Authors:  Hui Shen; Si Min Chen; Wei Liu; Fang Zhu; Li Juan He; Jun Dong Zhang; Shi Qun Zhang; Lan Yan; Zheng Xu; Guo Tong Xu; Mao Mao An; Yuan Ying Jiang
Journal:  Infect Immun       Date:  2015-04-20       Impact factor: 3.441

10.  Identification and differential gene expression of adhesin-like wall proteins in Candida glabrata biofilms.

Authors:  E A Kraneveld; J J de Soet; D M Deng; H L Dekker; C G de Koster; F M Klis; W Crielaard; P W J de Groot
Journal:  Mycopathologia       Date:  2011-07-17       Impact factor: 2.574

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