Lin Mike T, Longo Lawrence D, Pearce William J, Hessinger David A
Center for Perinatal Biology, School of Medicine, Loma Linda Univ., Loma Linda, CA 92350, USA.
Am J Physiol Heart Circ Physiol. 2005 Jul;289(1):H414-25. doi: 10.1152/ajpheart.01079.2004. Epub 2005 Feb 11.
In ovine basilar arterial smooth muscle cells (SMCs), the fetal "big" Ca2+-activated K+ (BK) channel activity is significantly greater and has a lower Ca2+ setpoint than BK channels from adult cells. In the present study, we tested the hypothesis that these differences result from developmentally regulated phosphorylation of these channels. Using the patch-clamp technique and a novel in situ enzymological approach, we measured the rates and extents of changes in BK channel voltage activation from SMC inside-out patch preparations in response to selective activation and inhibition of channel-associated protein phosphatases and kinases (CAPAKs). We show that BK channel activity is modulated during development by differential phosphorylation and that the activities of CAPAKs change substantially during development. In particular, excised membrane patches from adult SMCs exhibited greater protein kinase A activity than those from a fetus. In contrast, fetal SMCs exhibited greater protein kinase G activity and phosphatase activity than adult SMCs. These findings extend our previous observation that the BK channel Ca2+ setpoint differs significantly in adult and fetal cerebrovascular myocytes and suggest a biochemical mechanism for this difference. In addition, these findings suggest that the functional stoichiometry of CAPAKs varies significantly during development and that such variation may be a hitherto unrecognized mechanism of ion channel regulation.
在绵羊基底动脉平滑肌细胞(SMC)中,胎儿的“大”Ca2+激活钾通道(BK)活性显著更高,且与成年细胞的BK通道相比,其Ca2+阈值更低。在本研究中,我们检验了一种假说,即这些差异是由这些通道在发育过程中受调控的磷酸化作用导致的。使用膜片钳技术和一种新颖的原位酶学方法,我们测量了从SMC内向外膜片制备物中BK通道电压激活的变化速率和程度,以响应通道相关蛋白磷酸酶和激酶(CAPAKs)的选择性激活和抑制。我们发现,BK通道活性在发育过程中通过差异磷酸化进行调节,并且CAPAKs的活性在发育过程中发生了显著变化。特别是,成年SMC的切除膜片比胎儿的膜片表现出更高的蛋白激酶A活性。相反,胎儿SMC比成年SMC表现出更高的蛋白激酶G活性和磷酸酶活性。这些发现扩展了我们之前的观察结果,即成年和胎儿脑血管肌细胞中BK通道的Ca2+阈值存在显著差异,并提示了这种差异的生化机制。此外,这些发现表明,CAPAKs的功能化学计量在发育过程中显著变化,并且这种变化可能是一种迄今未被认识的离子通道调节机制。