| Literature DB >> 21251289 |
Mehboob Ali1,2, Erik P Lillehoj3, Yongsung Park1, Yoshiyuki Kyo1, K Chul Kim1.
Abstract
BACKGROUND: Airway surface liquid, often referred to as mucus, is a thin layer of fluid covering the luminal surface that plays an important defensive role against foreign particles and chemicals entering the lungs. Airway mucus contains various macromolecules, the most abundant being mucin glycoproteins, which contribute to its defensive function. Airway epithelial cells cultured in vitro secrete mucins and nonmucin proteins from their apical surface that mimics mucus production in vivo. The current study was undertaken to identify the polypeptide constituents of human airway epithelial cell secretions to gain a better understanding of the protein composition of respiratory mucus.Entities:
Year: 2011 PMID: 21251289 PMCID: PMC3036598 DOI: 10.1186/1477-5956-9-4
Source DB: PubMed Journal: Proteome Sci ISSN: 1477-5956 Impact factor: 2.480
Figure 1Sepharose CL-4B gel filtration chromatography of hAECS. The percent optical densities at 280 nm (solid line) and 555 nm (dashed line) are indicated on the x-axis while individual column fractions are indicated on the y-axis. The void volume (V0) and total volume (Vt) are indicated.
Figure 2One-dimensional SDS-polyacrylamide gel electrophoresis of Vfraction from gel filtration chromatography. Proteins were separated on a 12% gel under reducing conditions and visualized by silver staining. Lane 1, hAECS sample. Lane 2, prestained molecular weight marker proteins. Molecular weights in kDa are indicated on the right.
Proteins identified in the V0 fraction of hAECS following SDS-PAGE.
| Gene Name | Protein Name | ||||
|---|---|---|---|---|---|
| A2AP_HUMAN | Alpha-2-antiplasmin | 3-4 | 57 | 54,531 | 1 |
| A2MG_HUMAN | Alpha-2-macroglobulin | 2 | 134 | 163,175 | 3 |
| AACT_HUMAN | Alpha-1-antichymotrypsin | 4 | 240 | 47,621 | 6 |
| ANXA1_HUMAN | Annexin A1 | 5 | 245 | 38,690 | 7 |
| ANXA2_HUMAN | Annexin A2 | 5 | 539 | 38,580 | 14 |
| CEAM5_HUMAN | Carcinoembryonic antigen-related cell adhesion molecule 5 | 2-3 | 75 | 76,748 | 1 |
| CATD_HUMAN | Cathepsin D | 4 | 102 | 44,524 | 6 |
| CD59_HUMAN | CD59 glycoprotein | 9-10 | 121 | 14,168 | 5 |
| CERU_HUMAN | Ceruloplasmin | 2 | 85 | 122,128 | 3 |
| CLUS_HUMAN | Clusterin | 3-4 | 167 | 52,461 | 3 |
| CFAH_HUMAN | Complement factor H | 2 | 58 | 139,005 | 1 |
| CFAI_HUMAN | Complement factor I | 3 | 64 | 65,677 | 1 |
| CO3_HUMAN | Complement C3 | 1 | 1,453 | 187,030 | 38 |
| CYTB_HUMAN | Cystatin-B | 10 | 91 | 11,133 | 2 |
| DDEF2_HUMAN | Development and differentiation-enhancing factor 2 | 2 | 45 | 111,581 | 2 |
| ENOA_HUMAN | Alpha-enolase (Enolase 1) | 4 | 110 | 47,139 | 2 |
| EZRI_HUMAN | Ezrin | 3 | 105 | 69,370 | 2 |
| FBLN3_HUMAN | EGF-containing fibulin-like extracellular matrix protein 1 | 3-4 | 39 | 54,604 | 1 |
| FETUA_HUMAN | Alpha-2-HS-glycoprotein (Fetuin A) | 5 | 142 | 39,300 | 3 |
| ALDOA_HUMAN | Fructose-bisphosphate aldolase A | 5 | 76 | 39,395 | 1 |
| LG3BP_HUMAN | Galectin-3-binding protein | 3 | 120 | 65,289 | 5 |
| GELS_HUMAN | Gelsolin | 2 | 293 | 85,644 | 10 |
| G3P_HUMAN | Glyceraldehyde-3-phosphate dehydrogenase | 5 | 187 | 36,030 | 4 |
| GSTM1_HUMAN | Glutathione S-transferase Mu 1 | 6 | 128 | 25,695 | 6 |
| GSTM2_HUMAN | Glutathione S-transferase Mu 2 | 6 | 168 | 25,728 | 6 |
| GSTM3_HUMAN | Glutathione S-transferase Mu 3 | 6 | 180 | 26,542 | 9 |
| GSTM5_HUMAN | Glutathione S-transferase Mu 5 | 6 | 172 | 25,658 | 7 |
| GSTMP1_HUMAN | Glutathione S-transferase P | 6-7 | 53 | 23,341 | 1 |
| HBA_HUMAN | Hemoglobin subunit alpha | 9 | 56 | 15,248 | 1 |
| INADL_HUMAN | InaD-like protein | 1 | 53 | 196,247 | 1 |
| ITIH2_HUMAN | Inter-alpha-trypsin inhibitor heavy chain H2 | 2 | 112 | 106,370 | 2 |
| LDHA_HUMAN | L-lactate dehydrogenase A chain | 5 | 131 | 36,665 | 3 |
| LDHB_HUMAN | L-lactate dehydrogenase B chain | 5 | 114 | 36,615 | 2 |
| TRFL_HUMAN | Lactotransferrin (Lactoferrin) | 2 | 100 | 78,132 | 7 |
| LPLC1_HUMAN | Long palate, lung and nasal epithelium clone protein 1 | 3-4 | 1,188 | 52,408 | 36 |
| MUC1_HUMAN | Mucin-1 | 1 | 131 | 121,999 | 3 |
| MUC4_HUMAN | Mucin-4 | 1 | 131 | 231,440 | 3 |
| MUC5B_HUMAN | Mucin-5B | 1 | 1,207 | 590,122 | 27 |
| MUC16_HUMAN | Mucin-16 | 1 | 56 | 2,351,813 | 2 |
| NGAL_HUMAN | Neutrophil gelatinase-associated lipocalin | 7 | 344 | 22,574 | 12 |
| PRDX1_HUMAN | Peroxiredoxin-1 | 7 | 125 | 22,096 | 4 |
| PEDF_HUMAN | Pigment epithelium-derived factor | 4 | 187 | 46,313 | 5 |
| PIGR_HUMAN | Polymeric immunoglobulin receptor | 2 | 999 | 83,232 | 24 |
| PLUNC_HUMAN | Protein PLUNC | 6 | 438 | 26,696 | 13 |
| S100P_HUMAN | Protein S100-P (S100 calcium binding protein P) | 10 | 118 | 10,393 | 3 |
| S10A6_HUMAN | Protein S100-A6 (S100 calcium binding protein A6) | 10 | 48 | 10,173 | 2 |
| S10A8_HUMAN | Protein S100-A8 (S100 calcium binding protein A8) | 10 | 61 | 10,828 | 2 |
| S10AB_HUMAN | Protein S100-A11 (S100 calcium binding protein A11) | 10 | 41 | 11,733 | 1 |
| S10AG_HUMAN | Protein S100-A16 (S100 calcium binding protein A16) | 10 | 42 | 11,794 | 1 |
| RAB1A_HUMAN | Ras-related protein Rab-1A | 7-8 | 100 | 22,663 | 2 |
| RAB1B_HUMAN | Ras-related protein Rap-1B | 7-8 | 118 | 20,812 | 3 |
| TIMP1_HUMAN | Tissue inhibitor of metalloproteinase 1 | 7 | 74 | 23,156 | 1 |
| UB2D2_HUMAN | Ubiquitin-conjugating enzyme E2 D2 | 9 | 40 | 16,724 | 2 |
| UB1Q_HUMAN | Ubiquitin (ribosomal protein S27a) | 10 | 154 | 8,560 | 3 |
| VTDB_HUMAN | Vitamin D-binding protein | 3-4 | 142 | 52,929 | 2 |
aSDS-PAGE gel slice number (1 [top] - 10 [bottom]) from which the protein was isolated.
bIon Score, probability value that an observed peptide match is a true match; cuttoff value = 10.
cTheoretical molecular weight from Swiss-Prot database.
dNumber of tryptic peptides generated that match the mass of theoretical trypsin peptides.
Figure 3MUC5AC Western blot analysis. Equal protein aliquots (100 μg) of lysates of NHBE cells, COS-7 cells (negative control), or hAECS from NHBE cells were resolved by agarose gel electrophoresis, transferred to PVDF membrane, and reacted with anti-MUC5AC antibody (45M1). The positions of MUC5AC and the 250 kDa marker protein are shown on the right.
Figure 4Pie chart of molecular functions of proteins in high molecular weight hAECS identified by nano-LC-IT MS. Proteins are listed by category, number of proteins in the category and specific proteins identified.
Figure 5Pie chart of biological functions of proteins in high molecular weight hAECS identified by nano-LC-IT MS. Proteins are listed by category, number of proteins in the category and specific proteins identified.
Figure 6Categorization of proteins in high molecular weight hAECS identified by nano-LC-IT MS.