Emmer E, Rood R P, Wesolek J H, Cohen M E, Braithwaite R S, Sharp G W, Murer H, Donowitz M
Department of Medicine, New England Medical Center, Boston, Massachusetts 02111.
J Membr Biol. 1989 Jun;108(3):207-15. doi: 10.1007/BF01871735.
In rabbit ileum, Ca2+/calmodulin (CaM) appears to be involved in physiologically inhibiting the linked NaCl absorptive process, since inhibitors of Ca2+/CaM stimulate linked Na+ and Cl- absorption. The role of Ca2+/CaM-dependent phosphorylation in regulation of the brush-border Na+/H+ antiporter, which is believed to be part of the neutral linked NaCl absorptive process, was studied using purified brush-border membrane vesicles, which contain both the Na+/H+ antiporter and Ca2+/CaM-dependent protein kinase(s) and its phosphorprotein substrates. Rabbit ileal villus cell brush-border membrane vesicles were prepared by Mg precipitation and depleted of ATP. Using a freezethaw technique, the ATP-depleted vesicles were loaded with Ca2+, CaM, ATP and an ATP-regenerating system consisting of creatine kinase and creatine phosphate. The combination of Ca2+/CaM and ATP inhibited Na+/H+ exchange by 45 +/- 13%. This effect was specific since Ca2+/CaM and ATP did not alter diffusive Na+ uptake, Na+-dependent glucose entry, or Na+ or glucose equilibrium volumes. The inhibition of the Na+/H+ exchanger by Ca2+/CaM/ATP was due to an effect on the Vmax and not on the Km for Na+. In the presence of CaM and ATP, Ca2+ caused a concentration-dependent inhibition of Na+ uptake, with an effect 50% of maximum occurring at 120 nM. This Ca2+ concentration dependence was similar to the Ca2+ concentration dependence of Ca2+/CaM-dependent phosphorylation of specific proteins in the vesicles. The Ca2+/CaM/ATP-inhibition of Na+/H+ exchange was reversed by W13, a Ca2+/CaM antagonist, but not by a hydrophobic control, W12, or by H-7, a protein kinase C antagonist. We conclude that Ca2+, acting through CaM, regulates ileal brush-border Na+/H+ exchange, and that this may be involved in the regulation of neutral linked NaCl absorption.
在兔回肠中,Ca2+/钙调蛋白(CaM)似乎参与了对相关NaCl吸收过程的生理抑制,因为Ca2+/CaM的抑制剂会刺激相关的Na+和Cl-吸收。本研究使用纯化的刷状缘膜囊泡来探究Ca2+/CaM依赖性磷酸化在调节刷状缘Na+/H+反向转运体中的作用,该反向转运体被认为是中性相关NaCl吸收过程的一部分。这些膜囊泡同时含有Na+/H+反向转运体、Ca2+/CaM依赖性蛋白激酶及其磷蛋白底物。兔回肠绒毛细胞刷状缘膜囊泡通过Mg沉淀法制备,并去除了ATP。采用冻融技术,向ATP耗尽的囊泡中加载Ca2+、CaM、ATP以及由肌酸激酶和磷酸肌酸组成的ATP再生系统。Ca2+/CaM与ATP的组合使Na+/H+交换抑制了45±13%。这种效应具有特异性,因为Ca2+/CaM和ATP不会改变扩散性Na+摄取、Na+依赖性葡萄糖内流或Na+或葡萄糖平衡体积。Ca2+/CaM/ATP对Na+/H+交换体的抑制作用是由于对Vmax的影响,而不是对Na+的Km的影响。在存在CaM和ATP的情况下,Ca2+导致Na+摄取呈浓度依赖性抑制,在120 nM时出现最大效应的50%。这种Ca2+浓度依赖性类似于囊泡中特定蛋白质的Ca2+/CaM依赖性磷酸化的Ca2+浓度依赖性。Ca2+/CaM/ATP对Na+/H+交换的抑制作用可被Ca2+/CaM拮抗剂W13逆转,但不能被疏水对照物W12或蛋白激酶C拮抗剂H-7逆转。我们得出结论,Ca2+通过CaM起作用,调节回肠刷状缘Na+/H+交换,这可能参与了中性相关NaCl吸收的调节。