| Literature DB >> 32687500 |
Zhengchen Su1, Qing Chang1, Aleksandra Drelich1, Thomas Shelite2, Barbara Judy1, Yakun Liu1, Jie Xiao1, Changchen Zhou1, Xi He1, Yang Jin3, Tais Saito1,4, Shaojun Tang5, Lynn Soong4,6, Maki Wakamiya7, Xiang Fang7, Alexander Bukreyev1,4,6, Thomas Ksiazek1,4, William K Russell8, Bin Gong1,4.
Abstract
Intracerebral microhemorrhages (CMHs) are small foci of hemorrhages in the cerebrum. Acute infections induced by some intracellular pathogens, including rickettsia, can result in CMHs. Annexin a2 (ANXA2) has been documented to play a functional role during intracellular bacterial adhesion. Here we report that ANXA2-knockout (KO) mice are more susceptible to CMHs in response to rickettsia and Ebola virus infections, suggesting an essential role of ANXA2 in protecting vascular integrity during these intracellular pathogen infections. Proteomic analysis via mass spectrometry of whole brain lysates and brain-derived endosomes from ANXA2-KO and wild-type (WT) mice post-infection with R. australis revealed that a variety of significant proteins were differentially expressed, and the follow-up function enrichment analysis had identified several relevant cell-cell junction functions. Immunohistology study confirmed that both infected WT and infected ANXA2-KO mice were subjected to adherens junctional protein (VE-cadherin) damages. However, key blood-brain barrier (BBB) components, tight junctional proteins ZO-1 and occludin, were disorganized in the brains from R. australis-infected ANXA2-KO mice, but not those of infected WT mice. Similar ANXA2-KO dependent CMHs and fragments of ZO-1 and occludin were also observed in Ebola virus-infected ANXA2-KO mice, but not found in infected WT mice. Overall, our study revealed a novel role of ANXA2 in the formation of CMHs during R. australis and Ebola virus infections; and the underlying mechanism is relevant to the role of ANXA2-regulated tight junctions and its role in stabilizing the BBB in these deadly infections.Entities:
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Year: 2020 PMID: 32687500 PMCID: PMC7392349 DOI: 10.1371/journal.pntd.0007960
Source DB: PubMed Journal: PLoS Negl Trop Dis ISSN: 1935-2727
Upregulated proteins and their KEGG pathway interpretation from whole-brain lysate.
Fold change is calculated as (KO-WT)/WT.
| Gene ID | Protein name | Fold change | KEGG Pathway |
|---|---|---|---|
| ATPase, Ca++ transporting, plasma membrane 1(Atp2b1) | 4.17 | Calcium signaling pathway, cGMP-PKG signaling pathway, cAMP signaling pathway, Adrenergic signaling in cardiomyocytes, Salivary secretion, Pancreatic secretion | |
| ATPase, Ca++ transporting, plasma membrane 2(Atp2b2) | 6.25 | Calcium signaling pathway, cGMP-PKG signaling pathway, cAMP signaling pathway, Adrenergic signaling in cardiomyocytes, Salivary secretion, Pancreatic secretion | |
| ATPase, H+ transporting, lysosomal V1 subunit A(Atp6v1a) | 4.36 | Oxidative phosphorylation, Metabolic pathways, Phagosome, Synaptic vesicle cycle, Collecting duct acid secretion, Rheumatoid arthritis | |
| adaptor protein complex AP-1, beta 1 subunit(Ap1b1) | 5 | Lysosome | |
| clathrin, heavy polypeptide (Hc)(Cltc) | 5.83 | Lysosome, Endocytosis, Synaptic vesicle cycle, Endocrine and other factor-regulated calcium reabsorption, Huntington's disease, Bacterial invasion of epithelial cells | |
| enolase 1, alpha non-neuron(Eno1) | 4.33 | Glycolysis / Gluconeogenesis, Metabolic pathways, Biosynthesis of antibiotics, Carbon metabolism, Biosynthesis of amino acids, RNA degradation, HIF-1 signaling pathway | |
| heat shock protein 90 alpha (cytosolic), class B member 1(Hsp90ab1) | 4.1 | Protein processing in endoplasmic reticulum, PI3K-Akt signaling pathway, Antigen processing and presentation, NOD-like receptor signaling pathway, Progesterone-mediated oocyte maturation, Estrogen signaling pathway, Pathways in cancer, Prostate cancer | |
| heat shock protein 90, alpha (cytosolic), class A member 1(Hsp90aa1) | 9.4 | Protein processing in endoplasmic reticulum, PI3K-Akt signaling pathway, Antigen processing and presentation, NOD-like receptor signaling pathway, Progesterone-mediated oocyte maturation, Estrogen signaling pathway, Pathways in cancer, Prostate cancer | |
| hemoglobin, beta adult s chain(Hbb-bs) | 4.09 | African trypanosomiasis, Malaria | |
| histone cluster 1, H2bb(Hist1h2bb) | 4.67 | Alcoholism, Viral carcinogenesis, Systemic lupus erythematosus | |
| histone cluster 1, H2bk(Hist1h2bk) | 4.67 | Alcoholism, Viral carcinogenesis, Systemic lupus erythematosus | |
| histone cluster 1, H2bq(Hist1h2bq) | 4.67 | Alcoholism, Viral carcinogenesis, Systemic lupus erythematosus | |
| malate dehydrogenase 2, NAD (mitochondrial)(Mdh2) | 11.75 | Citrate cycle (TCA cycle), Cysteine and methionine metabolism, Pyruvate metabolism, Glyoxylate and dicarboxylate metabolism, Metabolic pathways, Biosynthesis of antibiotics, Carbon metabolism | |
| phosphofructokinase, muscle(Pfkm) | 4.25 | Glycolysis / Gluconeogenesis, Pentose phosphate pathway, Fructose and mannose metabolism, Galactose metabolism, Metabolic pathways, Biosynthesis of antibiotics | |
| pyruvate kinase, muscle(Pkm) | 8.83 | Glycolysis / Gluconeogenesis, Purine metabolism, Pyruvate metabolism, Metabolic pathways, Biosynthesis of antibiotics, Carbon metabolism, Biosynthesis of amino acids | |
| synaptosomal-associated protein 25(Snap25) | 4.33 | Synaptic vesicle cycle, Insulin secretion | |
| tyrosine 3-monooxygenase/tryptophan 5-monooxygenase activation protein, epsilon polypeptide(Ywhae) | 4.17 | Cell cycle, Oocyte meiosis, PI3K-Akt signaling pathway, Hippo signaling pathway, Neurotrophin signaling pathway, Viral carcinogenesis |
Downregulated proteins and their KEGG pathway interpretation from brain-derived endosomes.
Fold change is calculated as (KO-WT)/WT.
| ID | Gene Name | Fold change | KEGG PATHWAY |
|---|---|---|---|
| CNDP dipeptidase 2 (metallopeptidase M20 family)(Cndp2) | -0.6 | Arginine and proline metabolism, Histidine metabolism, | |
| UDP-glucose pyrophosphorylase 2(Ugp2) | -0.75 | Pentose and glucuronate interconversions, Galactose metabolism, | |
| acetyl-Coenzyme A acetyltransferase 1(Acat1) | -0.67 | Fatty acid degradation, Synthesis and degradation of | |
| aldehyde dehydrogenase family 7, member A1(Aldh7a1) | -0.71 | Glycolysis / Gluconeogenesis, Ascorbate and aldarate metabolism, | |
| betaine-homocysteine methyltransferase(Bhmt) | -0.67 | Glycine, serine and threonine metabolism, | |
| cofilin 2, muscle(Cfl2) | -0.63 | Axon guidance, Fc gamma R-mediated phagocytosis, | |
| glyoxalase 1(Glo1) | -0.62 | Pyruvate metabolism | |
| heat shock protein 8(Hspa8) | -0.73 | Spliceosome, MAPK signaling pathway, | |
| heat shock protein 90, alpha (cytosolic), class A member 1(Hsp90aa1) | -0.63 | Protein processing in endoplasmic reticulum, | |
| hypoxanthine guanine phosphoribosyl transferase(Hprt) | -0.67 | Purine metabolism, Drug metabolism—other enzymes, Metabolic pathways, | |
| pyridoxal (pyridoxine, vitamin B6) kinase(Pdxk) | -0.78 | Vitamin B6 metabolism, Metabolic pathways, | |
| pyruvate kinase, muscle(Pkm) | -0.67 | Glycolysis / Gluconeogenesis, Purine metabolism, Pyruvate metabolism, | |
| serine (or cysteine) peptidase inhibitor, clade A, member 1A(Serpina1a) | -0.64 | Complement and coagulation cascades | |
| serine (or cysteine) preptidase inhibitor, clade A, member 1B(Serpina1b) | -0.64 | Complement and coagulation cascades | |
| seryl-aminoacyl-tRNA synthetase(Sars) | -0.69 | Aminoacyl-tRNA biosynthesis | |
| thimet oligopeptidase 1(Thop1) | -0.78 | Renin-angiotensin system, African trypanosomiasis | |
| transketolase(Tkt) | -0.83 | Pentose phosphate pathway, Metabolic pathways, |
Fig 1Representative H&E staining of the brains from R.australlis-infected ANXA2-KO and WT mice.
Yellow arrows indicate the presence of focal hemorrhagic lesions. A, mock WT; B&C, mock AXNA2-KO; D-F, R. australis-infected WT; G-L), R. australis-infected AXNA2-KO mice. Scale bar: 20 μm.
Fig 6Visualization of the GO Term CC CC for whole brain lysate (A) and isolated endosome from the brain (B). Cytoscape BiNGO was used to generate the networks. Each node stands for a GO Term CC category, edges are present to connect functional related nodes. CMH-relevant functional groups (i.e., stress fiber and adherens junction) are enlarged and highlighted from the networks. The color bar indicates the range of p value corresponding to node (ANXA2 KO vs. WT in R. australis infection).
Fig 7Cell junction associated protein-protein interactome from whole brain lysate (A) and brain derived isolated endosomes (B). Darker nodes are the source node, representing target genes associated with cell junctions. The gray nodes stands for the interacting genes for our target genes.
Downregulated proteins and their KEGG pathway interpretation from whole-brain lysate.
Fold change is calculated as (KO-WT)/WT.
| Gene ID | Protein name | Fold change | KEGG Pathway |
|---|---|---|---|
| IQ motif and Sec7 domain 2(Iqsec2) | -0.63 | Endocytosis | |
| SH3/ankyrin domain gene 1(Shank1) | -0.7 | Glutamatergic synapse | |
| calcium/calmodulin-dependent protein kinase II gamma(Camk2g) | -0.63 | ErbB signaling pathway, Calcium signaling pathway, cAMP signaling pathway, HIF-1 signaling pathway | |
| calcium/calmodulin-dependent protein kinase II, delta(Camk2d) | -0.76 | ErbB signaling pathway, Calcium signaling pathway, cAMP signaling pathway, HIF-1 signaling pathway | |
| myosin, heavy polypeptide 10, non-muscle(Myh10) | -0.78 | Tight junction | |
| piccolo (presynaptic cytomatrix protein)(Pclo) | -0.76 | Insulin secretion |
Upregulated proteins and their KEGG pathway interpretation from brain-derived endosomes.
Fold change is calculated as (KO-WT)/WT.
| Gene ID | Protein name | Fold Change | KEGG PATHWAY |
|---|---|---|---|
| 3-hydroxy-3-methylglutaryl-Coenzyme A lyase(Hmgcl) | 2 | Synthesis and degradation of ketone bodies, | |
| L1 cell adhesion molecule(L1cam) | 2.5 | Axon guidance, Cell adhesion molecules (CAMs) | |
| SH3-domain GRB2-like endophilin B2(Sh3glb2) | 2.33 | Endocytosis | |
| adaptor-related protein complex 2, beta 1 subunit(Ap2b1) | 3.5 | Endocytosis, Synaptic vesicle cycle, | |
| alanyl-tRNA synthetase(Aars) | 2.17 | Aminoacyl-tRNA biosynthesis | |
| brain glycogen phosphorylase(Pygb) | 4.5 | Starch and sucrose metabolism, Metabolic pathways, | |
| calcium/calmodulin-dependent protein kinase IV(Camk4) | 2 | Calcium signaling pathway, cAMP signaling pathway, | |
| glutathione peroxidase 1(Gpx1) | 3 | Glutathione metabolism, Arachidonic acid metabolism, | |
| phosphoglycolate phosphatase(Pgp) | 3 | Glyoxylate and dicarboxylate metabolism, | |
| talin 1(Tln1) | 3.33 | Rap1 signaling pathway, Focal adhesion, |