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基质金属蛋白酶基因多态性与支气管肺发育不良:鉴定MMP16为肺发育中的新因子。

Matrix metalloproteinase gene polymorphisms and bronchopulmonary dysplasia: identification of MMP16 as a new player in lung development.

作者信息

Hadchouel Alice, Decobert Fabrice, Franco-Montoya Marie-Laure, Halphen Isabelle, Jarreau Pierre-Henri, Boucherat Olivier, Martin Emmanuel, Benachi Alexandra, Amselem Serge, Bourbon Jacques, Danan Claude, Delacourt Christophe

机构信息

INSERM, Unité 841, IMRB, équipe 06, Créteil, France.

出版信息

PLoS One. 2008 Sep 11;3(9):e3188. doi: 10.1371/journal.pone.0003188.

Abstract

BACKGROUND

Alveolarization requires coordinated extracellular matrix remodeling, a process in which matrix metalloproteinases (MMPs) play an important role. We postulated that polymorphisms in MMP genes might affect MMP function in preterm lungs and thus influence the risk of bronchopulmonary dysplasia (BPD).

METHODS AND FINDINGS

Two hundred and eighty-four consecutive neonates with a gestational age of <28 weeks were included in this prospective study. Forty-five neonates developed BPD. Nine single-nucleotide polymorphisms (SNPs) were sought in the MMP2, MMP14 and MMP16 genes. After adjustment for birth weight and ethnic origin, the TT genotype of MMP16 C/T (rs2664352) and the GG genotype of MMP16 A/G (rs2664349) were found to protect from BPD. These genotypes were also associated with a smaller active fraction of MMP2 and with a 3-fold-lower MMP16 protein level in tracheal aspirates collected within 3 days after birth. Further evaluation of MMP16 expression during the course of normal human and rat lung development showed relatively low expression during the canalicular and saccular stages and a clear increase in both mRNA and protein levels during the alveolar stage. In two newborn rat models of arrested alveolarization the lung MMP16 mRNA level was less than 50% of normal.

CONCLUSIONS

MMP16 may be involved in the development of lung alveoli. MMP16 polymorphisms appear to influence not only the pulmonary expression and function of MMP16 but also the risk of BPD in premature infants.

摘要

背景

肺泡化需要细胞外基质的协调重塑,基质金属蛋白酶(MMPs)在这一过程中发挥重要作用。我们推测MMP基因多态性可能影响早产肺中MMP的功能,从而影响支气管肺发育不良(BPD)的风险。

方法与结果

本前瞻性研究纳入了284例孕周小于28周的连续新生儿。45例新生儿发生了BPD。在MMP2、MMP14和MMP16基因中寻找9个单核苷酸多态性(SNP)。在调整出生体重和种族后,发现MMP16 C/T(rs2664352)的TT基因型和MMP16 A/G(rs2664349)的GG基因型可预防BPD。这些基因型还与出生后3天内收集的气管吸出物中MMP2的活性部分较小以及MMP16蛋白水平降低3倍有关。在正常人和大鼠肺发育过程中对MMP16表达的进一步评估显示,在小管期和囊泡期表达相对较低,在肺泡期mRNA和蛋白水平均明显增加。在两个肺泡化停滞的新生大鼠模型中,肺MMP16 mRNA水平低于正常水平的50%。

结论

MMP16可能参与肺泡的发育。MMP16多态性似乎不仅影响MMP16的肺表达和功能,还影响早产儿发生BPD的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a56a/2527515/4cb1abaff67f/pone.0003188.g001.jpg

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