Adenoviral gene transfer of a mutant surfactant enzyme ameliorates pseudomonas-induced lung injury

被引:17
作者
Zhou, J.
Wu, Y.
Henderson, F.
McCoy, D. M.
Salome, R. G.
McGowan, S. E.
Mallampalli, R. K.
机构
[1] Univ Iowa, Dept Internal Med, Div Pulm & Crit Care, Roy J & Lucille A Carver Coll Med, Iowa City, IA 52242 USA
[2] Univ Iowa, Dept Biochem, Roy J & Lucille A Carver Coll Med, Iowa City, IA 52242 USA
[3] Univ Iowa, Dept Vet Affairs Med Ctr, Roy J & Lucille A Carver Coll Med, Iowa City, IA 52242 USA
关键词
gene transfer; adenovirus; surfactant; phosphatidylcholine; cytidylyltransferase; acute lung injury;
D O I
10.1038/sj.gt.3302746
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Surfactant deficiency is an important contributor to the acute respiratory distress syndrome, a disorder that commonly occurs after bacterial sepsis. CTP: phosphocholine cytidylyltransferase (CCTa) is the rate-limiting enzyme required for the biosynthesis of dipalmitoylphosphatidylcholine (DPPC), the major phospholipid of surfactant. In this study, a cDNA encoding a novel, calpain-resistant mutant CCTa enzyme was delivered intratracheally in mice using a replication-deficient adenovirus 5 CTP: phosphocholine cytidylyltransferase construct (Ad5-CCTPenta) in models of bacterial sepsis. Ad5-CCTPenta gene transfer produced high-level CCTa gene expression, increased alveolar surfactant (DPPC) levels and improved lung surface tension and pressure-volume relationships relative to control mice. Pseudomonas aeruginosa (PA103) decreased DPPC synthesis, in part, via calpain-mediated degradation of CCTa. Deleterious effects of Pseudomonas on surfactant were lessened after infection with a mutant strain lacking the type III exotoxin, Exo U. Replication-deficient adenovirus 5 CTP: phosphocholine cytidylyltransferase gene delivery improved lung biophysical properties by optimizing surface activity in this Pseudomonas model of proteinase-mediated lung injury. The studies are the first demonstration of in vivo gene transfer of a lipogenic enzyme resulting in improved lung mechanics. The studies suggest that augmentation of DPPC synthesis via gene delivery of CCTa can attenuate impaired lung function in surfactant-deficient states such as bacterial sepsis.
引用
收藏
页码:974 / 985
页数:12
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