| Literature DB >> 29954330 |
Suyu Mei1, Erik K Flemington2, Kun Zhang3.
Abstract
BACKGROUND: Bacterial invasive infection and host immune response is fundamental to the understanding of pathogen pathogenesis and the discovery of effective therapeutic drugs. However, there are very few experimental studies on the signaling cross-talks between bacteria and human host to date.Entities:
Keywords: Pathogen-host coevolution; Pathogen-host protein interaction networks; Signaling pathways; Transfer learning; l2-regularized logistic regression
Mesh:
Substances:
Year: 2018 PMID: 29954330 PMCID: PMC6027805 DOI: 10.1186/s12864-018-4873-9
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Fig. 1Overview flowchart of the proposed framework
Fig. 2The derived interlogs between M. tuberculosis H37Rv drug-resistant genes and human genes. a illustrates the interactions of M. tuberculosis H37Rv drug-resistant genes involved in cytochromes and other target-modifying enzymes that could cause potential chemical modification of drug molecules [46]. b illustrates the interactions of M. tuberculosis H37Rv drug-resistant genes involved in SOS-response and DNA replication that lead to mutations in the gene or its regulatory region. The light blue circles denote M. tuberculosis H37Rv genes and the red diamonds denote human genes [46]
GO enrichment analysis of the significant interlog {Rv2193, MT-CO1} LH57_11955 (Rv2193) is classified into the drug resistance type of cytochromes and other target-modifying enzymes that could cause potential chemical modification of drug molecules [46]
| GO term ID | GO aspect | GO term name | |
|---|---|---|---|
| Common GO terms | GO:0016020 | C | membrane |
| GO:0016021 | C | integral to membrane | |
| GO:0016491 | F | oxidoreductase activity | |
| GO:0055114 | P | oxidation-reduction process | |
| GO:1902600 | P | hydrogen ion transmembrane transport | |
| GO:0022904 | P | respiratory electron transport chain | |
| GO:0019646 | P | aerobic electron transport chain | |
| GO:0015002 | F | heme-copper terminal oxidase activity | |
| GO:0070469 | C | respiratory chain | |
| GO:0045277 | C | respiratory chain complex IV | |
| GO:0005751 | C | mitochondrial respiratory chain complex IV | |
| GO:0006979 | P | response to oxidative stress | |
| GO:0009060 | P | aerobic respiration | |
| GO:0046688 | P | response to copper ion | |
| GO:0051602 | P | response to electrical stimulus | |
| GO:0020037 | F | heme binding |
C denotes cellular component, F denotes molecular function, and P denotes biological process
GO enrichment analysis of the derived interlog {Rv2737c, ERCC6}. recA (Rv2737c) is classified into the drug resistance type of SOS-response and DNA replication that leads to mutations in the gene or its regulatory region [46]
| GO term ID | GO aspect | GO term name | |
|---|---|---|---|
| Common GO terms | GO:0005515 | F | protein binding |
| GO:0006281 | P | DNA repair | |
| GO:0006974 | P | response to DNA damage stimulus | |
| GO:0016787 | F | hydrolase activity | |
| GO:0008094 | F | DNA-dependent ATPase activity | |
| GO:0003677 | F | DNA binding | |
| GO:0046677 | P | response to antibiotic | |
| GO:0009432 | P | SOS response | |
| GO:0009650 | P | UV protection | |
| GO:0010212 | P | response to ionizing radiation | |
| GO:0006310 | P | DNA recombination | |
| GO:0006259 | P | DNA metabolic process | |
| GO:0000725 | P | recombinational repair | |
| GO:0000303 | P | response to superoxide | |
| GO:0006283 | P | transcription-coupled nucleotide-excision repair | |
| GO:0006284 | P | base-excision repair | |
| GO:0006979 | P | response to oxidative stress | |
| GO:0007256 | P | activation of JNKK activity | |
| GO:0008630 | P | DNA damage response, signal transduction resulting in induction of apoptosis | |
| GO:0010332 | P | response to gamma radiation | |
| GO:0009411 | P | response to UV |
C denotes cellular component, F denotes molecular function, and P denotes biological process
Fig. 3ROC curves for 5-fold cross validation performance evaluation on the artificially created significant interlogs between M. tuberculosis H37Rv and H. sapiens
Performance estimation of 5-fold cross validation and performance comparison with the existing methods
| Size | Combined-instance | Homolog-instance | Target-instance | |||||||
|---|---|---|---|---|---|---|---|---|---|---|
| SP | SE | MCC | SP | SE | MCC | SP | SE | MCC | ||
| Positive | 15,287 | 0.9823 | 0.9966 | 0.9790 | 0.9684 | 0.9915 | 0.9601 | 0.9820 | 0.9976 | 0.9796 |
| Negative | 15,287 | 0.9965 | 0.9821 | 0.9790 | 0.9912 | 0.9676 | 0.9601 | 0.9975 | 0.9817 | 0.9796 |
| [Acc; MCC] | [98.93%; 0.9789] | [97.95%; 0.9599] | [97.95%; 0.9599] | |||||||
| [ROC-AUC] | [0.9933] | [0.9912] | [0.9978] | |||||||
| F1 Score | 0.9894 | 0.9798 | 0.9897 | |||||||
| KMM-SVM [ | SP | SE | F1 score | |||||||
| ① human- > mouse | 0.517 | 0.937 | 0.667 | |||||||
| ② | 0.257 | 0.161 | 0.199 | |||||||
① denotes the work [23] that transfers the knowledge of Salmonella-human PPI networks to predict Salmonella-mouse protein interactions;② denotes the work [23] that transfers the knowledge of Salmonella-Ecoli PPI networks to predict Salmonella-human protein interactions
Fig. 4Percentage of pathogen-host protein pairs in the training data whose partners share common GO terms
Predicted positive rates on less significant interlogs, non-interlogs and the prediction set
| Less significant interlogs | Non-interlogs | Prediction set | |
|---|---|---|---|
| Size | 98,187 | 98,187 | 407,700 |
| Predicted positive rate | 18.78% | 1.41% | 1.96% |
Fig. 5Validated less significant interlogs. a illustrates the interactions of M. tuberculosis H37Rv drug-resistant genes that are involved in antibiotic efflux pumps [46]. b illustrates the interactions of M. tuberculosis H37Rv drug-resistant genes that are involved in target-modifying enzymes [46]
Gene ontology analysis of the predicted interactions {Rv0849, ABCB1} and {Rv1988, PNP}. Rv0849 is classified into the drug resistance type of antibiotic efflux pumps [46]. Rv1988 is classified into the drug resistance type of target-modifying enzymes [46]
| { | GO term ID | GO aspect | GO term name |
|---|---|---|---|
| Common GO terms | GO:0055085 | P | transmembrane transport |
| GO:0006810 | P | transport | |
| GO:0005886 | C | plasma membrane | |
| GO:0016021 | C | integral to membrane | |
| GO:0005215 | F | transporter activity | |
| GO:0006855 | P | drug transmembrane transport | |
| GO:0042908 | P | xenobiotic transport | |
| GO:0009986 | C | cell surface | |
| GO:0070062 | C | extracellular vesicular exosome | |
| GO:0002485 | P | antigen processing and presentation of endogenous peptide antigen via MHC class I via ER pathway, TAP-dependent | |
| { | GO term ID | GO aspect | GO term name |
| Common GO terms | GO:0005737 | C | cytoplasm |
| GO:0016740 | F | transferase activity | |
| GO:0000154 | P | rRNA modification | |
| GO:0008649 | F | rRNA methyltransferase activity | |
| GO:0031167 | P | rRNA methylation | |
| GO:0046677 | P | response to antibiotic | |
|
| GO:0006139 | P | nucleobase-containing compound metabolic process |
| GO:0006148 | P | inosine catabolic process | |
| GO:0006195 | P | purine nucleotide catabolic process | |
| O:0006738 | P | nicotinamide riboside catabolic process | |
| GO:0006955 | P | immune response | |
| GO:0042493 | P | response to drug | |
| GO:0070970 | P | interleukin-2 secretion | |
| GO:0034356 | P | NAD biosynthesis via nicotinamide riboside salvage pathway |
C denotes cellular component, F denotes molecular function, and P denotes biological process
Fig. 6The degree distribution of the M. tuberculosis H37Rv genes in the derived MTB-human PPI networks (left); the degree distribution of M. tuberculosis H37Rv targeted human genes in human physical PPI networks (right)
Fig. 7Illustration of the way of deriving interlogs. The ellipses in red and blue denote the target species and the ellipses in other colors denote the source species. The circles denote genes. The red full line denotes the experimental protein-protein interactions. The red dotted line denotes ortholog mapping. The blue full line with arrows at two ends denotes the derived interlogs. The methods illustrated in (a) and (b) exploited the pathogen-host PPIs of other species to derive the interlogs of the target species, while the method illustrated in (c) transferred the knowledge of intra-species M. tuberculosis H37Rv PPI networks to predict protein interactions between M. tuberculosis H37Rv and H. sapiens
Fig. 8GO enrichment analysis of the human genes that are predicted to be targeted by M. tuberculosis H37Rv drug-resistant genes
Fig. 9Statistics of MTB-human PPIs and MTB genes that are predicted to target specific human immune signaling pathways
GO and pathway enrichment analysis of the M. tuberculosis H37Rv genes that are predicted to target human TNF-alpha and IL-1~IL11 signaling pathways
| TNF-Alpha | GO term ID | GO aspect | GO term name | % | Shared |
| MTB genes that target human gene | GO:0005524 | F | ATP binding | 26.92 | Yes |
| GO:0016020 | C | membrane | 20.51 | Yes | |
| GO:0055114 | P | oxidation-reduction process | 16.67 | No | |
| GO:0016310 | P | phosphorylation | 5.98 | No | |
| GO:0006412 | P | translation | 5.13 | No | |
| GO:0055085 | P | transmembrane transport | 2.14 | Yes | |
| GO:0046933 | F | hydrogen ion transporting ATP synthase activity, rotational mechanism | 1.71 | No | |
| Human gene | GO:0002479 | P | antigen processing and presentation of exogenous peptide antigen via MHC class I, TAP-dependent | – | – |
| GO:0043687 | P | post-translational protein modification | – | – | |
| GO:0045899 | P | positive regulation of RNA polymerase II transcriptional preinitiation complex assembly | – | – | |
| Targeted human genes |
| ||||
| IL-1 ~ IL-11 | GO term ID | GO aspect | GO term name | % | Shared |
| M.TB genes that target the human gene | GO:0003824 | F | catalytic activity | 32.17 | No |
| GO:0016021 | C | integral to membrane | 16.78 | No | |
| GO:0005524 | F | ATP binding | 27.27 | Yes | |
| GO:0055114 | P | oxidation-reduction process | 9.79 | No | |
| GO:0006810 | P | transport | 3.50 | Yes | |
| GO:0006281 | P | DNA repair | 2.10 | No | |
| Human gene | GO:0005515 | F | protein binding | – | – |
| GO:0006914 | P | autophagy | – | – | |
| GO:0016236 | P | macroautophagy | – | – | |
| GO:0010918 | P | positive regulation of mitochondrial membrane potential | – | – | |
| GO:0006974 | P | cellular response to DNA damage stimulus | – | – | |
Targeted human genes BCL2L11,UNC119,IRS1,IL2,DOK2,PTPN6,BAD,IL11,VCP,IRS2
C denotes cellular component, F denotes molecular function, and P denotes biological process