Division of Pulmonary Medicine and Cystic Fibrosis Center, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 2011 Jun 17;286(24):21239-53. doi: 10.1074/jbc.M111.240267. Epub 2011 Apr 27.
Sodium 4-phenylbutyrate (4PBA) improves the intracellular trafficking of ΔF508-CFTR in cystic fibrosis (CF) epithelial cells. The underlying mechanism is uncertain, but 4PBA modulates the expression of some cytosolic molecular chaperones. To identify other 4PBA-regulated proteins that might regulate ΔF508-CFTR trafficking, we performed a differential display RT-PCR screen on IB3-1 CF bronchiolar epithelial cells exposed to 4PBA. One transcript up-regulated by 4PBA encoded ERp29, a luminal resident of the endoplasmic reticulum (ER) thought to be a novel molecular chaperone. We tested the hypothesis that ERp29 is a 4PBA-regulated ER chaperone that influences ΔF508-CFTR trafficking. ERp29 mRNA and protein expression was significantly increased (∼1.5-fold) in 4PBA-treated IB3-1 cells. In Xenopus oocytes, ERp29 overexpression increased the functional expression of both wild-type and ΔF508-CFTR over 3-fold and increased wild-type cystic fibrosis transmembrane conductance regulator (CFTR) plasma membrane expression. In CFBE41o- WT-CFTR cells, expression of and short circuit currents mediated by CFTR decreased upon depletion of ERp29 as did maturation of newly synthesized CFTR. In IB3-1 cells, ΔF508-CFTR co-immunoprecipitated with endogenous ERp29, and overexpression of ERp29 led to increased ΔF508-CFTR expression at the plasma membrane. These data suggest that ERp29 is a 4PBA-regulated ER chaperone that regulates WT-CFTR biogenesis and can promote ΔF508-CFTR trafficking in CF epithelial cells.
苯丁酸钠(4PBA)可改善囊性纤维化(CF)上皮细胞中ΔF508-CFTR 的细胞内转运。其潜在机制尚不确定,但 4PBA 可调节一些胞质分子伴侣的表达。为了鉴定可能调节ΔF508-CFTR 转运的其他 4PBA 调节蛋白,我们对暴露于 4PBA 的 IB3-1 CF 细支气管上皮细胞进行了差异显示 RT-PCR 筛选。4PBA 上调的一个转录本编码 ERp29,它是内质网(ER)的腔驻留蛋白,被认为是一种新型分子伴侣。我们检验了 ERp29 是一种 4PBA 调节的 ER 伴侣,可影响 ΔF508-CFTR 转运的假设。4PBA 处理的 IB3-1 细胞中 ERp29 mRNA 和蛋白表达显著增加(约 1.5 倍)。在 Xenopus 卵母细胞中,ERp29 过表达使野生型和 ΔF508-CFTR 的功能表达增加了 3 倍以上,并增加了野生型囊性纤维化跨膜电导调节剂(CFTR)的质膜表达。在 CFBE41o-WT-CFTR 细胞中,ERp29 耗尽后 CFTR 的表达和短路电流介导的电流减少,新合成的 CFTR 的成熟也减少。在 IB3-1 细胞中,ΔF508-CFTR 与内源性 ERp29 共免疫沉淀,而 ERp29 的过表达导致质膜上 ΔF508-CFTR 的表达增加。这些数据表明 ERp29 是一种 4PBA 调节的 ER 伴侣,可调节 WT-CFTR 的生物发生,并可促进 CF 上皮细胞中 ΔF508-CFTR 的转运。