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Ragni E, et al.  (2011) The genetic interaction network of CCW12, a Saccharomyces cerevisiae gene required for cell wall integrity during budding and formation of mating projections. BMC Genomics 12():107

Abstract: ABSTRACT: BACKGROUND: Mannoproteins construct the outer cover of the fungal cell wall. The covalently linked cell wall protein Ccw12p is an abundant mannoprotein. It is considered as crucial structural cell wall component since in baker's yeast the lack of CCW12 results in severe cell wall damage and reduced mating efficiency. RESULTS: In order to explore the function of CCW12, we performed a Synthetic Genetic Analysis (SGA) and identified genes that are essential in the absence of CCW12. The resulting interaction network identified 21 genes involved in cell wall integrity, chitin synthesis, cell polarity, vesicular transport and endocytosis. Among those are PFD1, WHI3, SRN2, PAC10, FEN1 and YDR417C, which have not been related to cell wall integrity before. We correlated our results with genetic interaction networks of genes involved in glucan and chitin synthesis. A core of genes essential to maintain cell integrity in response to cell wall stress was identified. In addition, we performed a large-scale transcriptional analysis and compared the transcriptional changes observed in mutant ccw12delta with transcriptomes from studies investigating responses to constitutive or acute cell wall damage. We identified a set of genes that are highly induced in the majority of the mutants/conditions and are directly related to the cell wall integrity pathway and cell wall compensatory responses. Among those are BCK1, CHS3, EDE1, PFD1, SLT2 and SLA1 that were also identified in the SGA. In contrast, a specific feature of mutant ccw12delta is the transcriptional repression of genes involved in mating. Physiological experiments substantiate this finding. Further, we demonstrate that Ccw12p is present at the cell periphery and highly concentrated at the presumptive budding site, around the bud, at the septum and at the tip of the mating projection. CONCLUSIONS: The combination of high throughput screenings, phenotypic analyses and localization studies provides new insight into the function of Ccw12p. A compensatory response, culminating in cell wall remodelling and transport/recycling pathways is required to buffer the loss of CCW12. Moreover, the enrichment of Ccw12p in bud, septum and mating projection is consistent with a role of Ccw12p in preserving cell wall integrity at sites of active growth. The microarray data produced in this analysis have been submitted to NCBI GEO database and GSE22649 record was assigned.

Status: Published Type: Journal Article PubMed ID: 21320323

Topics addressed in this paper

Number of different genes curated to this paper: 63

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AGA1 ARC18 BCK1 BRE5 CCW12 CHS2 CHS3 CHS5 CHS6 CHS7
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Topics Genes linked to topics (#11 - 20 )
CSI2 ECM13 ECM15 ECM21 ECM31 ECM4 EDE1 FEN1 FIG1 FIG2
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Topics Genes linked to topics (#21 - 30 )
FIT2 FLO11 FUS1 HOG1 KDX1 KRE9 KTR3 KTR4 MET5 MF(ALPHA)2
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Topics Genes linked to topics (#31 - 40 )
MID2 MNN10 MNS1 OCH1 PAC10 PBS2 PFD1 PIR3 PRM1 PRM10
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Topics Genes linked to topics (#41 - 50 )
PRM3 PRM4 PRM5 PRM6 PRM7 RCR1 ROT2 SAC6 SDP1 SHE4
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Topics Genes linked to topics (#51 - 60 )
SKT5 SLA1 SLT2 SRN2 SVS1 TIR1 WHI3 YDR417C YLR194C YPS3
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Topics Genes linked to topics (#61 - 63 )
YPS5 YPS6 YUR1
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