| Literature DB >> 19040762 |
Anna V Kuballa1, Abigail Elizur.
Abstract
BACKGROUND: Exoskeletal hardening in crustaceans can be attributed to mineralization and sclerotization of the organic matrix. Glycoproteins have been implicated in the calcification process of many matrices. Sclerotization, on the other hand, is catalysed by phenoloxidases, which also play a role in melanization and the immunological response in arthropods. Custom cDNA microarrays from Portunus pelagicus were used to identify genes possibly associated with the activation pathways involved in these processes.Entities:
Mesh:
Year: 2008 PMID: 19040762 PMCID: PMC2612702 DOI: 10.1186/1471-2164-9-575
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
The list of transcripts associated with cuticle hardening that are up-regulated in post-molt (Cy3) crabs when compared against crabs in the intermolt stage (Cy5).
| AAX55747 mannose-binding protein | 110 | 6e-23 | 5 | 9.536 | 0 | 0.006 | |
| AAX55747 mannose-binding protein | 104 | 8e-21 | 3.865 | 5.7 | 0.002 | 0.032 | |
| AAP58737 C-type lectin receptor | 46.6 | 8e-04 | 2.015 | 5.564 | 0.002 | 0.035 |
M = log2 fold change in expression, t = t-statistic, and the P value = t-distribution. The adjusted P values were calculated using the False Discovery Rate (FDR) procedure. Positive values of M and t indicate up-regulation in the Cy3 sample (* multiple values represent several cDNAs all forming one contig).
The list of transcripts associated with cuticle hardening that are up-regulated in intermolt (Cy5) crabs when compared against crabs in the post-molt stage (Cy3).
| PpHEM7 | AY861677 | 290 | 6e-75 | -5.147 | -10.466 | 0 | 0.004 |
| PpHEM3 | AF249297 | 807 | 0.0 | -4.849 | -16.719 | 0 | 0.002 |
| PpTRY1 | AB205408 | 75.8 | 2e-10 | -4.655 | -9.19 | 0 | 0.007 |
| PpHEM1 | AY861676 | 103 | 9e-19 | -4.473 | -9.907 | 0 | 0.005 |
| PpTRY2 | AAL67442 trypsin | 62.0 | 1e-08 | -4.473 | -10.021 | 0 | 0.005 |
| PpHEM4 | AF249297 | 870 | 0.0 | -4.402 | -14.753 | 0 | 0.002 |
| PpHEM2 | AY861677 | 176 | 8e-41 | -4.273 | -9.162 | 0 | 0.007 |
| PpHEM5 | AF249297 | 327 | 3e-86 | -4.18 | -12.698 | 0 | 0.003 |
| PpHEM6 | AF249297 | 807 | 0.0 | -4.155 | -16.298 | 0 | 0.002 |
| PpTRY3 | Y15041 PVTRYPSN3 | 63.9 | 6e-07 | -4.119 | -10.005 | 0 | 0.005 |
| PpHEM8 | AF249297 | 95.6 | 3e-16 | -3.41 | -11.878 | 0 | 0.003 |
| PpCTRY1 | CAA71673 Chymotrypsin BII | 32.7 | 4.9 | -2.935 | -9.127 | 0 | 0.007 |
| EF120998 | AAD16454 clotting protein precursor | 38.9 | 0.10 | -2.83 | -8.196 | 0 | 0.01 |
| PpCTRY2 | HAY12273 | 50.1 | 0.008 | -2.433 | -8.984 | 0 | 0.007 |
| CAD20734 carcinin | 71.2 | 2e-11 | -1.696 | -5.514 | 0.002 | 0.036 |
M = log2 fold change in expression, t = t-statistic, and the P value = t-distribution. The adjusted P values were calculated using the False Discovery Rate (FDR) procedure. Negative values of M and t indicate up-regulation in the Cy5 sample (* multiple values represent several cDNAs all forming one contig).
A list of transcripts associated with cuticle hardening that are up-regulated in early pre-molt (Cy5) crabs when compared against crabs in the intermolt stage (Cy3).
| PpCTLR | AAP58737 C-type lectin receptor | 46.6 | 8e-04 | -6.000 | -32.791 | 0 | 0.012 |
M = log2 fold change in expression, t = t-statistic, and the P value = t-distribution. The adjusted P values were calculated using the False Discovery Rate (FDR) procedure. Negative values of M and t indicate up-regulation in the Cy5 sample (* multiple values represent several cDNAs all forming one contig).
A list of transcripts associated with cuticle hardening that are up-regulated in late pre-molt (Cy3) crabs when compared against crabs in ecdysis (Cy5).
| Carcinin | CAD20734 carcinin | 71.2 | 2e-11 | 4.769 | 13.448 | 0 | 0.01 |
| PpCTLR | AAP58737 C-type lectin receptor | 46.6 | 8e-04 | 4.178 | 16.607 | 0 | 0.01 |
| PpHEM1 | AY861676 | 103 | 9e-19 | 3.953 | 12.659 | 0 | 0.01 |
| AAD16454 clotting protein precursor | 38.9 | 0.10 | 3.764 | 14.388 | 0 | 0.01 | |
| PpHEM3 | AF249297 | 807 | 0.0 | 3.714 | 11.321 | 0 | 0.013 |
| PpHEM4 | AF249297 | 870 | 0.0 | 3.688 | 10.413 | 0 | 0.015 |
| PpHEM7 | AY861677 | 290 | 6e-75 | 3.628 | 8.628 | 0.001 | 0.022 |
| PpHEM6 | AF249297 | 807 | 0.0 | 3.572 | 9.35 | 0 | 0.018 |
| PpTRY3 | Y15041 PVTRYPSN3 | 63.9 | 6e-07 | 3.474 | 8.198 | 0.001 | 0.025 |
| PpHEM5 | AF249297 | 327 | 3e-86 | 3.339 | 12.09 | 0 | 0.01 |
| PpHEM2 | AY861677 | 176 | 8e-41 | 3.33 | 10.225 | 0 | 0.015 |
| PpTRY1 | AB205408 | 75.8 | 2e-10 | 3.275 | 12.784 | 0 | 0.01 |
| PpTRY2 | AAL67442 trypsin | 62.0 | 1e-08 | 2.769 | 6.565 | 0.002 | 0.047 |
M = log2 fold change in expression, t = t-statistic, and the P value = t-distribution. The adjusted P values were calculated using the False Discovery Rate (FDR) procedure. Positive values of M and t indicate up-regulation in the Cy3 sample (* multiple values represent several cDNAs all forming one contig).
Figure 1Differential expression profiles of genes potentially associated with cuticle hardening across molt stages. Where no bar is evident, no differential gene expression was observed.
Figure 2Alternative conceptual models depicting the proposed involvement of C-type lectin receptors and mannose binding protein in the regulation of calcification. A C-type lectin receptors bind to the cuticle protein thus facilitating glycosylation. Mannose binding protein binds to glycosylated regions thereby exposing the calcium nucleation site and enabling calcification, by either conformational change (A1) or deglycosylation (A2). B C-type lectin receptor binds to the sugar moieties of the glycosylated cuticle proteins, masking the calcification nucleation site. Competitive binding by the mannose binding protein to the glycosylation sites facilitates calcification exposing the calcium nucleation site either through conformational change to the cuticle protein (B1) or by deglycosylation (B2).