Soma Tamotsu, Chiba Hideki, Kato-Mori Yuko, Wada Takuro, Yamashita Toshihiko, Kojima Takashi, Sawada Norimasa
Department of Pathology, Sapporo Medical University School of Medicine, Sapporo 060-8556, Japan.
Exp Cell Res. 2004 Oct 15;300(1):202-12. doi: 10.1016/j.yexcr.2004.07.012.
We have recently shown that cyclic AMP (cAMP) increases claudin-5 immunoreactivity along cell boundaries and could promote phosphorylation of claudin-5 on threonine residues in porcine blood-brain barrier (BBB) endothelial cells via a protein kinase A (PKA)-dependent pathway (Exp. Cell Res. 290 [2003] 275). Along this line, we identified a putative phosphorylation site for PKA at Thr(207) in the intracytoplasmic carboxyl terminal domain of claudin-5. To clarify the biological significance of this site in regulation of endothelial barrier functions, we established rat lung endothelial (RLE) cells expressing doxycycline (Dox)-inducible wild-type claudin-5 and a mutant with a substitution of Ala for Thr(207) (CL5T207A). We show that induction of wild-type claudin-5 is sufficient to reconstitute the paracellular barrier against inulin (5 kDa), but not mannitol (182 Da), in leaky RLE cells. By contrast, the barrier against both molecules was induced in the mutant cells. We also demonstrate that, upon cAMP treatment, Thr(207) of claudin-5 is involved in enhancement of claudin-5 immunoreactive signals along cell borders, rapid reduction in transendothelial electrical resistance (TER), and loosening of the claudin-5-based endothelial barrier against mannitol, but not inulin. cAMP decreased the claudin-5-based endothelial barrier, strongly suggesting that other tight-junction molecule(s) are required to elevate endothelial barrier functions in response to cAMP.
我们最近发现,环磷酸腺苷(cAMP)可增加猪血脑屏障(BBB)内皮细胞沿细胞边界的claudin-5免疫反应性,并可通过蛋白激酶A(PKA)依赖性途径促进claudin-5苏氨酸残基的磷酸化(《实验细胞研究》290 [2003] 275)。据此,我们在claudin-5胞质羧基末端结构域的Thr(207)处鉴定出一个假定的PKA磷酸化位点。为阐明该位点在内皮屏障功能调节中的生物学意义,我们建立了表达强力霉素(Dox)诱导型野生型claudin-5和Thr(207)被丙氨酸替代的突变体(CL5T207A)的大鼠肺内皮(RLE)细胞。我们发现,诱导野生型claudin-5足以在渗漏的RLE细胞中重建对菊粉(5 kDa)而非甘露醇(182 Da)的细胞旁屏障。相比之下,突变体细胞中对这两种分子的屏障均被诱导。我们还证明,经cAMP处理后,claudin-5的Thr(207)参与增强细胞边界处claudin-5免疫反应信号、快速降低跨内皮电阻(TER)以及减弱基于claudin-5的内皮对甘露醇而非菊粉的屏障,但不参与对菊粉的屏障调节。cAMP降低了基于claudin-5的内皮屏障,强烈表明需要其他紧密连接分子来响应cAMP升高内皮屏障功能。