Abdullah L H, Davis S W, Burch L, Yamauchi M, Randell S H, Nettesheim P, Davis C W
Department of Medicine, University of North Carolina, Chapel Hill 27514, USA.
Biochem J. 1996 Jun 15;316 ( Pt 3)(Pt 3):943-51. doi: 10.1042/bj3160943.
The SPOC1 cell, a novel goblet cell line derived from rat trachea, was tested for its ability to exhibit regulated mucin secretion in response to purinergic (P2) agonists. High-molecular mass glycoconjugates (HMMGs) purified by CsCl-density-gradient centrifugation had a buoyant density of 1.45 g/ml. The purified HMMG material exhibited a single major band with an apparent molecular mass of greater than 1000 kDa in SDS/ polyacrylamide gels stained with silver or blotted and stained with soya-bean agglutinin. [3H]HMMG was resistant to proteoglycan-degrading enzymes, but was susceptible to neuraminidase. The HMMG was approx. 91% carbohydrate by weight, and the glycosides were O-linked. The HMMG amino acid composition was enriched in Ser and Thr (sum 27%). Thus SPOC1-cell HMMG possess the characteristics of mucin. Mucin secretion by SPOC1 cells, grown on permeable supports and perfused luminally, was stimulated by ATP, UTP and adenosine 5'-[gamma-thio]triphosphate (100 microM) 4-5-fold over a baseline of 4 ng/min. The three dose-effect relations were nearly identical (K0.5 approximately 4 microM). SPOC1 cells grown on plastic and rat tracheal epithelial primary cells responded similarly to ATP and/or UTP. SPOC1 cells failed to respond to other purinergic agonists, either luminally or serosally, and consequently seem to possess an apical membrane P2u purinoceptor. SPOC1-cell total RNA was probed for P2u purinoceptor mRNA. Using conserved primers for both reverse transcriptase and PCR, a single band of the predicted size was observed, which had a nucleotide base sequence identical with the rat P2u purinoceptor mRNA. Thus SPOC1 cells secrete mucin under the control of a P2u purinoceptor; they should prove useful in dissecting the associated cellular regulatory pathways.
SPOC1细胞是一种源自大鼠气管的新型杯状细胞系,对其在嘌呤能(P2)激动剂刺激下表现出调节性粘蛋白分泌的能力进行了测试。通过氯化铯密度梯度离心法纯化的高分子量糖缀合物(HMMG)的浮力密度为1.45 g/ml。在银染的SDS/聚丙烯酰胺凝胶中或经大豆凝集素印迹和染色后,纯化的HMMG材料呈现出一条单一的主要条带,其表观分子量大于1000 kDa。[3H]HMMG对蛋白聚糖降解酶具有抗性,但对神经氨酸酶敏感。HMMG按重量计约91%为碳水化合物,且糖苷为O-连接型。HMMG的氨基酸组成富含丝氨酸和苏氨酸(总和为27%)。因此,SPOC1细胞的HMMG具有粘蛋白的特征。在可渗透支持物上生长并进行腔内灌注的SPOC1细胞分泌的粘蛋白,在ATP、UTP和腺苷5'-[γ-硫代]三磷酸(100 μM)刺激下,比4 ng/min的基线水平增加了4 - 5倍。这三种剂量效应关系几乎相同(半数效应浓度约为4 μM)。在塑料上生长的SPOC1细胞和大鼠气管上皮原代细胞对ATP和/或UTP的反应相似。SPOC1细胞对其他嘌呤能激动剂无论是腔内还是浆膜刺激均无反应,因此似乎具有顶端膜P2u嘌呤受体。对SPOC1细胞的总RNA进行了P2u嘌呤受体mRNA的检测。使用逆转录酶和PCR的保守引物,观察到一条预测大小的单一条带,其核苷酸碱基序列与大鼠P2u嘌呤受体mRNA相同。因此,SPOC1细胞在P2u嘌呤受体的控制下分泌粘蛋白;它们在剖析相关的细胞调节途径方面应会很有用。