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Original Article

Developmental Regulation of Surfactant-Associated Proteins in Rabbit Fetal Lung In Vivo

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Pages 775-793 | Received 18 Nov 1991, Accepted 05 Mar 1992, Published online: 02 Jul 2009

References

  • Snyder JM, Mendelson CR, Johnston JM. The morphology of lung development in the human fetus. Pulmonary Development: Transition from Intrauterine to Extrauterine Life, GH Nelson. Dekker, New York 1985; 19–46
  • Dobbs LG. Pulmonary surfactant. Annu Rev Med 1989; 40: 431–446
  • Avery ME, Mead J. Surface properties in relation to atelectesis and hyaline membrane disease. Am J Dis Child 1959; 97: 517–523
  • Hawgood S, Clements JA. Pulmonary surfactant and its apoproteins. J Clin Invest 1990; 86: 1–6
  • King RJ, Klass DJ, Gikas EG, Clements JA. Isolation of apoproteins from canine surface active material. Am J Physiol 1973; 224: 788–795
  • Ng VL, Herndon VL, Mendelson CR, Snyder JM. Characterization of rabbit surfactant-associated proteins. Biochim Biophys Acta 1983; 754: 218–226
  • Hawgood S, Benson BJ, Hamilton RL, Jr. Effects of a surfactant-associated protein and calcium ions on the structure and surface activity of lung surfactant lipids. Biochemistry 1985; 24: 184–190
  • Kuroki Y, Mason RJ, Voelker DR. Alveolar type II cells express a high affinity receptor for pulmonary surfactant protein A. Proc Natl Acad Sci USA 1988; 85: 5566–5570
  • Kuroki Y, Mason RJ, Voelker DR. Chemical modification of surfactant protein A alters high affinity binding to rat alveolar type II cells and regulation of phospholipid secretion. J Biol Chem 1988; 263: 17596–17602
  • Thakur NR, Tesan M, Tyler NE, Bleasdale JE. Altered lipid synthesis in type II pneumonocytes exposed to lung surfactant. Biochem J 1986; 240: 679–690
  • Tenner AJ, Robinson SL, Borchelt J, Wright JR. Human pulmonary surfactant protein (SP-A), a protein structurally homologus to Clq, can enhance FcR- and CR1-mediated phagocytosis. J Biol Chem 1989; 264: 13923–13928
  • Glasser SW, Korfhagen TR, Weaver TE, Pilot-Matias T, Fox JL, Whitsett JA. cDNA and deduced amino acid sequence of human pulmonary surfactant-associated proteolipid SPL (Phe). Proc Natl Acad Sci USA 1987; 84: 4007–4011
  • Glasser SW, Korfhagen TR, Weaver TE. cDNA, deduced polypeptide structure and chromosomal assignment of human pulmonary surfactant proteolipid, SPL (pVal). J Biol Chem 1988; 263: 9–12
  • Takahashi A, Fujiwara T. Proteolipid in bovine lung surfactant: its role in surfactant function. Biochem Biophys Res Commun 1986; 135: 527–532
  • Hawgood S, Benson BJ, Schilling J, Damm D, Clements JA, White RT. Nucleotide and amino acid sequences of pulmonary surfactant protein SP 18 and evidence for cooperation between SP 18 and SP 28–36 in surfactant lipid adsorption. Proc Natl Acad Sci USA 1987; 84: 66–70
  • Suzuki Y, Fujita Y, Kogishi K. Reconstitution of tubular myelin from synthetic lipids and proteins associated with pig pulmonary surfactant. Am Rev Respir Dis 1989; 140: 75–81
  • Persson A, Rust K, Chang D, Moxley M, Longmore W, Crouch E. CP4: pneumonocyte-derived collagenous surfactant-associated protein. Evidence for heterogeneity of collagenous surfactant proteins. Biochemistry 1988; 27: 8576–8584
  • Snyder JM. The biology of the surfactant-associated proteins. Pulmonary Surfactant: Biochemical, Functional, Regulatory and Clinical Concepts, J Bourbon. CRC Press, Boca Raton, FL 1991; 105–126
  • Katyal SL, Singh G. An immunologic study of the apoproteins of rat lung surfactant. Lab Invest 1979; 40: 562–567
  • Schellhase DE, Emrie PA, Fisher JH, Shannon JM. Ontogeny of surfactant apoproteins in the rat. Pediatr Res 1989; 26: 167–174
  • Snyder JM, Mendelson CR. Induction and characterization of the major surfactant apoprotein during rabbit fetal lung development. Biochim Biophys Acta 1987; 920: 226–236
  • Boggaram V, Qing K, Mendelson CR. The major apoprotein of rabbit pulmonary surfactant: elucidation of primary sequence and cyclic AMP and developmental regulation. J Biol Chem 1988; 263: 2939–2947
  • Xu J, Richardson C, Ford C. Isolation and characterization of the cDNA for pulmonary surfactant associated protein-B (SP-B) in the rabbit. Biochem Biophys Res Commun 1989; 160: 325–332
  • Liley HG, Tyler-White R, Warr RG, Benson BJ, Hawgood S, Ballard PL. Regulation of messenger RNAs for the hydrophobic surfactant proteins in human lung. J Clin Invest 1989; 83: 1191–1197
  • Whitsett JA, Weaver TE, Clark JC. Glucocorticoid enhances surfactant proteolipid Phe and pVal synthesis and RNA in fetal lung. J Biol Chem 1987; 262: 15618–15623
  • Hallman M, Epstein BL, Gluck L. Analysis of labeling and clearance of lung surfactant phospholipids in rabbit. J Clin Invest 1981; 68: 742–751
  • Fisher JH, Shannon JM, Hofmann T, Mason RJ. Nucleotide and deduced amino acid sequence of the hydrophobic surfactant protein SP-C from rat: expression in alveolar type II cells and homology with SP-C from other species. Biochim Biophys Acta 1989; 995: 225–230
  • Chomczynski P, Sacchi N. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal Biochem 1987; 162: 156–159
  • Maniatis T, Fritsch EF, Sambrook J. Molecular Cloning: A Laboratory Manual. Cold Springs Harbor Laboratory, Cold Springs Harbor, NY 1982
  • Rappolee DA, Mark D, Banda MJ, Werb Z. Wound macrophages express TGF-α and other growth factors in vivo: analysis by mRNA phenotyping. Science 1988; 241: 708–711
  • Horowitz S, Dafni N, Shapiro DL, Holm DA, Notter RH, Quible DJ. Hyperoxic exposure alters gene expression in the lung: induction of the tissue inhibitor of metalloproteinases mRNA and other mRNAs. J Biol Chem 1989; 264: 7092–7095
  • Randell SH, Silbajoris R, Young SL. Ontogeny of rat lung type II cells correlated with surfactant lipids and surfactant apoprotein expression. Am J Physiol 1991; 260: L562–L570
  • Jaskoll TF, Phelps D, Taeusch HW, Smith BT, Slavkin HO. Localization of pulmonary surfactant protein during mouse lung development. Dev Biol 1984; 106: 256–261
  • Slavkin HC, Johnson R, Oliver P. Lamellar body formation precedes pulmonary surfactant apoprotein expression during embryonic mouse lung development in vivo and in vitro. Differentiation 1989; 41: 223–236
  • Whitsett JA, Pilot T, Clark JC, Weaver TE. Induction of surfactant protein in fetal lung: effects of cAMP and dexamethasone on SAP-35 RNA and synthesis. J Biol Chem 1987; 262: 5256–5261
  • Ballard PL, Hawgood S, Liley H. Regulation of pulmonary surfactant apoprotein SP 28–36 gene in fetal human lung. Proc Natl Acad Sci USA 1986; 83: 9527–9531
  • Lauweryns TJ. Hyaline membrane disease in newborn infants: macroscopic, radiographic, and light and electron microscopic studies. Hum Pathol 1970; 1: 175–204
  • Snyder JM, Kwun JE, O'Brien JA, Rosenfeld CR, Odom MJ. The concentration of the 35-kDa surfactant apoprotein in amniotic fluid from normal and diabetic pregnancies. Pediatr Res 1988; 24: 728–734

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