| Literature DB >> 26949398 |
Lite Ge1, Miao Jiang2, Da Duan3, Zijun Wang2, Linyu Qi2, Xiaohua Teng3, Zhenyu Zhao3, Lei Wang3, Yi Zhuo3, Ping Chen2, Xijing He4, Ming Lu1.
Abstract
Nasal olfactory mucosa mesenchymal stem cells (OM-MSCs) have the ability to promote regeneration in the nervous system in vivo. Moreover, with view to the potential for clinical application, OM-MSCs have the advantage of being easily accessible from patients and transplantable in an autologous manner, thus eliminating immune rejection and contentious ethical issues. So far, most studies have been focused on the role of OM-MSCs in central nervous system replacement. However, the secreted proteomics of OM-MSCs have not been reported yet. Here, proteins secreted by OM-MSCs cultured in serum-free conditions were separated on SDS-PAGE and identified by LC-MS/MS. As a result, a total of 274 secreted proteins were identified. These molecules are known to be important in neurotrophy, angiogenesis, cell growth, differentiation, and apoptosis, and inflammation which were highly correlated with the repair of central nervous system. The proteomic profiling of the OM-MSCs secretome might provide new insights into their nature in the neural recovery. However, proteomic analysis for clinical biomarkers of OM-MSCs needs to be further studied.Entities:
Year: 2016 PMID: 26949398 PMCID: PMC4753338 DOI: 10.1155/2016/1243659
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Figure 1Otolaryngologic image of the nasal cavity. Schematic of the right nasal cavity, ∗: at the root of the middle turbinate (a), endoscopic visualization of the obtaining (b), and endoscopic pictures after one month (c).
Figure 2Characterization and sphere-forming capabilities of OM-MSCs. Adherent cells migrated from the explants and most cells became spindle shaped (a), the rapidly grown cells within nuclear disintegration and cell cleavage (b), immunocytochemistry of the characteristic markers of human OM-MSCs: STRO-1 ((c) and (g)) and nestin ((d) and (h)). After cultivating in the appropriate culture conditions, as expected, cells tended to aggregate; many loosely attached or floating spheres appeared ((e) and (f)). Neurospheres can be expressed as nestin throughout the whole process; nuclei are counterstained with DAPI (blue). Scale bars: (a) 100 μm; (b) 200 μm, white box: 100 μm; (c) and (d) 50 μm; (e) and (g) 200 μm; (f) and (h) 50 μm. DAPI = 4′,6-diamidino-2-phenylindole; MSC = mesenchymal stem cell.
Figure 3Surface marker expression. Flow cytometric analysis of these cells showed that they express the MSC markers CD73, CD90, and CD105, but not CD34 and CD45, which are characteristic of hematopoietic cells.
Figure 4OM-MSCs differentiate in vitro into osteoblasts, adipocytes, and neurons. Adipogenic, osteogenic, and neuron differentiation was observed and assessed by Oil red O (ORO), alizarin red staining (ARS), or MAP-2 in induction media. (a) Adipocyte cellular morphology in 2 weeks; (b) lipid droplets that showed red color after ORO staining; (c) osteocyte cellular morphology in 3 weeks; (d) ARS that verified the formation of large calcium deposits. (e) Neuron cellular morphology in 12 days; (f) neuron-like cells that can be expressed MAP-2. Nuclei are counterstained with DAPI (blue). Scale bars: (a) and (c) 200 μm; (b) and (d) 100 μm; (e) and (f) 50 μm. DAPI = 4′,6-diamidino-2-phenylindole; MSC = mesenchymal stem cell.
Figure 5Western blot assay of OM-MSCs neuronal induction for 1 and 2 weeks. The differentiation of neuron-like cells from mesenchymal stem cells (MSCs) was verified by western blot. After induced, the neuron marker β-tubulin and MAP-2 were highly increased, and the stem cell marker, nestin, indicated significant downregulation.
Figure 6The SDS-PAGE analysis of the proteins isolated from OM-MSC conditioned medium and the hydrophobicity and primary subcellular localization of the identified proteins in OM-MSC conditioned medium. SDS-PAGE analysis of the secreted proteins of OM-MSC (a). The GRAVY values varied from −1.647 to 0.282 and 261 (94.5%) of them are negative, showing these proteins were hydrophilic and might be unidentified secreted proteins and functioned as growth factors or signaling molecules (b). Of the 276 identified proteins from OM-MSC conditioned medium, 175 (63.4%) were recognized as extracellular proteins through GO cellular component assignment. Classification by cellular localization is redundant since a protein can be classified in more than one compartment (c).
Figure 7Molecular functions and biological processes of extracellular proteins identified in OM-MSC conditioned medium. The molecular functions of the identified secreted proteins were composed of several categories, such as antioxidant activity, binding, catalytic activity, enzyme regulator activity, receptor activity, signal transducer activity, structural molecule activity, and transporter activity (a). It indicated that the main functions of secreted proteins are maintaining the homeostasis of extracellular matrix, transmitting signals, and so on. Significantly higher frequencies of genes (p < 0.05) were associated with 16 biological processes (b). These proteins were most frequently involved in metabolism, defense response, signaling, and tissue differentiation.
Function classification of OM-MSCs secreted proteins.
| Cell growth/proliferation/differentiation/apoptosis/survival/adhesion/migration | ||
|---|---|---|
| Accession | Gene name | Protein description |
| P02787 | TF | Serotransferrin |
| Q14118 | DAG1 | Dystroglycan |
| Q8IUX7 | AEBP1 | Adipocyte enhancer-binding protein 1 |
| P00751 | CFB | Complement factor B |
| P35908 | KRT2 | Keratin, type II cytoskeletal 2 epidermal |
| Q12841 | FSTL1 | Follistatin-related protein 1 |
| Q9Y240 | CLEC11A | C-type lectin domain family 11 member A |
| P60709 | ACTB | Actin, cytoplasmic 1 |
| P11047 | LAMC1 | Laminin subunit gamma-1 |
| P55268 | LAMB2 | Laminin subunit beta-2 |
| P00738 | HP | Haptoglobin |
| P04053 | DNTT | DNA nucleotidylexotransferase |
| P14923 | JUP | Junction plakoglobin |
| Q13835 | PKP1 | Plakophilin-1 |
| Q14624 | ITIH4 | Inter-alpha-trypsin inhibitor heavy chain H4 |
| O43866 | CD5L | CD5 antigen-like |
| P11226 | MBL2 | Mannose-binding protein C |
| P04196 | HRG | Histidine-rich glycoprotein |
| P17936 | IGFBP3 | Insulin-like growth factor-binding protein 3 |
| P18065 | IGFBP2 | Insulin-like growth factor-binding protein 2 |
| P22692 | IGFBP4 | Insulin-like growth factor-binding protein 4 |
| P35052 | GPC1 | Glypican-1 |
| P47929 | LGALS7 | Galectin-7 (Gal-7) |
| Q6E0U4 | DMKN | Dermokine |
| Q7Z5J4 | RAI1 | Retinoic acid-induced protein 1 |
| P00747 | PLG | Plasminogen |
| Q71UI9 | H2AFV | Histone H2A.V |
| Q66K74 | MAP1S | Microtubule-associated protein 1S |
| P10909 | CLU | Clusterin |
| Q9UBP9 | GULP1 | PTB domain-containing engulfment adapter protein 1 |
| P55290 | CDH13 | Cadherin-13 |
| P02751 | FN1 | Fibronectin |
| Q12913 | PTPRJ | Receptor-type tyrosine-protein phosphatase eta |
| P40197 | GP5 | Platelet glycoprotein V |
| P04004 | VTN | Vitronectin |
| P14151 | SELL | L-selectin |
| P35858 | IGFALS | Insulin-like growth factor-binding protein complex acid labile subunit |
| Q02413 | DSG1 | Desmoglein-1 |
| Q08554 | DSC1 | Desmocollin-1 |
| Q14112 | NID2 | Nidogen-2 |
| Q16270 | IGFBP7 | Insulin-like growth factor-binding protein 7 |
| Q86SJ6 | DSG4 | Desmoglein-4 |
| Q9UI47 | CTNNA3 | Catenin alpha-3 |
| Q9Y6C2 | EMILIN1 | EMILIN-1 |
| F5GY03 | SPARC | SPARC |
|
| ||
| Angiogenesis and blood circulation | ||
| P00751 | CFB | Complement factor B |
| P04196 | HRG | Histidine-rich glycoprotein |
| P00747 | PLG | Plasminogen |
| P00734 | F2 | Prothrombin |
| P05154 | SERPINA5 | Plasma serine protease inhibitor |
| P02763 | ORM1 | Alpha-1-acid glycoprotein 1 |
| P02774 | GC | Vitamin D-binding protein |
| P00748 | F12 | Coagulation factor XII |
| P01008 | SERPINC1 | Antithrombin-III |
| P01009 | SERPINA1 | Alpha-1-antitrypsin |
| P01019 | AGT | Angiotensinogen |
| P01042 | KNG1 | Kininogen-1 |
| P02749 | APOH | Beta-2-glycoprotein 1 |
| P02768 | ALB | Serum albumin |
| P05155 | SERPING1 | Plasma protease C1 inhibitor |
| P07359 | GP1BA | Platelet glycoprotein Ib alpha chain |
| P12259 | F5 | Coagulation factor V |
| P68871 | HBB | Hemoglobin subunit beta |
| Q9UNN8 | PROCR | Endothelial protein C receptor |
| P02649 | APOE | Apolipoprotein E |
| P08572 | COL4A2 | Collagen alpha-2(IV) chain |
| P01011 | SERPINA3 | Alpha-1-antichymotrypsin |
| P02452 | COL1A1 | Collagen alpha-1(I) chain |
| P03952 | KLKB1 | Plasma kallikrein |
| P16035 | TIMP2 | Metalloproteinase inhibitor 2 |
| Q9HCU0 | CD248 | Endosialin |
| P02751 | FN1 | Fibronectin |
|
| ||
| Inflammation/immune regulation | ||
| Q8IUX7 | AEBP1 | Adipocyte enhancer-binding protein 1 |
| P00738 | HP | Haptoglobin |
| P04053 | DNTT | DNA nucleotidylexotransferase |
| P81605 | DCD | Dermcidin |
| P01024 | C3 | Complement C3 |
| P01880 | IGHD | Ig delta chain C region |
| O43866 | CD5L | CD5 antigen-like |
| P11226 | MBL2 | Mannose-binding protein C |
| P04196 | HRG | Histidine-rich glycoprotein |
| P01871 | IGHM | Ig mu chain C region |
| P01876 | IGHA1 | Ig alpha-1 chain C region |
| P01877 | IGHA2 | Ig alpha-2 chain C region |
| P05546 | SERPIND1 | Heparin cofactor 2 |
| P07357 | C8A | Complement component C8 alpha chain |
| P0C0L4 | C4A | Complement C4-A |
| P10643 | C7 | Complement component C7 |
| P13671 | C6 | Complement component C6 |
| P15814 | IGLL1 | Immunoglobulin lambda-like polypeptide 1 |
| P19652 | ORM2 | Alpha-1-acid glycoprotein 2 |
| P48740 | MASP1 | Mannan-binding lectin serine protease 1 |
| Q6UXS9 | CASP12 | Inactive caspase-12 |
| P00747 | PLG | Plasminogen |
| P00734 | F2 | Prothrombin |
| P05154 | SERPINA5 | Plasma serine protease inhibitor |
| P02763 | ORM1 | Alpha-1-acid glycoprotein 1 |
| P02774 | GC | Vitamin D-binding protein |
|
| ||
| Neural regulation/growth/development | ||
| Q14118 | DAG1 | Dystroglycan |
| Q16099 | GRIK4 | Glutamate receptor ionotropic, kainate 4 |
| P05067 | APP | Amyloid beta A4 protein |
| A6NNA5 | DRGX | Dorsal root ganglia homeobox protein |
| P36955 | SERPINF1 | Pigment epithelium-derived factor |
| P04053 | DNTT | DNA nucleotidylexotransferase |
| P81605 | DCD | Dermcidin |
| Q7Z5J4 | RAI1 | Retinoic acid-induced protein 1 |
| P55290 | CDH13 | Cadherin-13 |
Figure 8Function annotation of the identified secreted proteins. Proteins that have the function annotations in Swiss-Prot database were classified into 4 groups named angiogenesis related proteins, related to neurotrophy, related to cell growth, migration, differentiation, and apoptosis, and proteins associated with inflammation.