| Literature DB >> 25927022 |
Kambiz Gilany1, Arash Minai-Tehrani2, Elham Savadi-Shiraz3, Hassan Rezadoost4, Niknam Lakpour1.
Abstract
BACKGROUND: The human seminal fluid is a complex body fluid. It is not known how many proteins are expressed in the seminal plasma; however in analog with the blood it is possible up to 10,000 proteins are expressed in the seminal plasma. The human seminal fluid is a rich source of potential biomarkers for male infertility and reproduction disorder.Entities:
Keywords: Biomarker; Human seminal plasma; Proteome; Proteomics
Year: 2015 PMID: 25927022 PMCID: PMC4386088
Source DB: PubMed Journal: J Reprod Infertil ISSN: 2228-5482
Figure 1A: pI distribution of collected human seminal plasma proteome. B: pI distribution of theoretical human proteome
Figure 2Number of post-translation types in the collected human seminal plasm proteome
Figure 3Number of post-translation modification (PTM) site on the collected human seminal plasma
Figure 4Amino acid distribution of cataloged the human seminal plasma proteome (HSPP) compared to the theoretical human proteome (HP)
Figure 5Chromosome distribution of the human seminal plasma versus the theoretical human proteome
Tabulated are the ten important biological functions with the greatest statistical significance for enrichment in the collected proteome data set of the HSPP (GOTERM: level ALL)
| Biological functions | % | p-value |
|---|---|---|
|
| 11.3 | 3.13E-19 |
|
| 2.5 | 1.13E-18 |
|
| 2 | 5.85E-18 |
|
| 2.4 | 8.71E-18 |
|
| 2.4 | 8.7E-18 |
|
| 1.9 | 1.35E-17 |
|
| 3.3 | 1.37E-17 |
|
| 1.9 | 1.57E-17 |
|
| 1.9 | 1.57E-17 |
|
| 8.4 | 1.9E-17 |
The percentage is calculated as: involved proteins divided by the total number of proteins multiplied by one-hundred. The enrichment p-value (compared to the theoretical human proteome) is calculated based on EASE Score, a modified Fisher's Exact Test and ranges from 0 to 1. Fisher's Exact p-value = 0 represent perfect enrichment. Usually the p-value must be equal to or smaller than 0.05 to be considered strongly enriched in the annotation categories. The closer the value is to zero, the more enriched is the category
Tabulated are the top ten important molecular functions with the greatest statistical significance for enrichment in the collected proteome data set of the HSPP (GOTERM: level ALL)
| Molecular functions | % | p-value |
|---|---|---|
|
| 7.5 | 2.99E-20 |
|
| 3.1 | 5.25E-19 |
|
| 3.8 | 1.4E-18 |
|
| 3 | 2.77E-18 |
|
| 7 | 5.16E-18 |
|
| 2.4 | 1.06E-15 |
|
| 5 | 1.82E-15 |
|
| 4 | 8.02E-15 |
|
| 1.9 | 3.33E-14 |
|
| 4.9 | 9.95E-14 |
Explanations for the percentage and p-values can be found in Table 1