Gagnon Kenneth B E, England Roger, Delpire Eric
Dept. of Anesthesiology, Vanderbilt Univ. Medical Center, T-4202 Medical Center North, 1161 21st Ave. South, Nashville, TN 37232, USA.
Am J Physiol Cell Physiol. 2006 Jan;290(1):C134-42. doi: 10.1152/ajpcell.00037.2005. Epub 2005 Jun 1.
In the present study, we have demonstrated functional interaction between Ste20-related proline-alanine-rich kinase (SPAK), WNK4 [with no lysine (K)], and the widely expressed Na+-K+-2Cl- cotransporter type 1 (NKCC1). NKCC1 function, which we measured in Xenopus laevis oocytes under both isosmotic (basal) and hyperosmotic (stimulated) conditions, was unaffected when SPAK and WNK4 were expressed alone. In contrast, expression of both kinases with NKCC1 resulted in a significant increase in cotransporter activity and an insensitivity to external osmolarity or cell volume. NKCC1 activation is dependent on the catalytic activity of SPAK and likely also of WNK4, because mutations in their catalytic domains result in an absence of cotransporter stimulation. The results of our yeast two-hybrid experiments suggest that WNK4 does not interact directly with NKCC1 but does interact with SPAK. Functional experiments demonstrated that the binding of SPAK to WNK4 was also required because a SPAK-interaction-deficient WNK4 mutant (Phe997Ala) did not increase NKCC1 activity. We also have shown that the transport function of K+-Cl- cotransporter type 2 (KCC2), a neuron-specific KCl cotransporter, was diminished by the expression of both kinases under both isosmotic and hyposmotic conditions. Our data are consistent with WNK4 interacting with SPAK, which in turn phosphorylates and activates NKCC1 and phosphorylates and deactivates KCC2.
在本研究中,我们已经证明了Ste20相关富含脯氨酸-丙氨酸的激酶(SPAK)、WNK4[无赖氨酸(K)]与广泛表达的1型钠-钾-2氯共转运体(NKCC1)之间的功能相互作用。我们在等渗(基础)和高渗(刺激)条件下于非洲爪蟾卵母细胞中测量的NKCC1功能,在单独表达SPAK和WNK4时不受影响。相反,两种激酶与NKCC1一起表达导致共转运体活性显著增加,并且对外部渗透压或细胞体积不敏感。NKCC1的激活依赖于SPAK的催化活性,可能也依赖于WNK4的催化活性,因为它们催化结构域中的突变导致共转运体刺激缺失。我们酵母双杂交实验的结果表明,WNK4不直接与NKCC1相互作用,但确实与SPAK相互作用。功能实验表明,SPAK与WNK4的结合也是必需的,因为缺乏SPAK相互作用的WNK4突变体(Phe997Ala)不会增加NKCC1活性。我们还表明,在等渗和低渗条件下,两种激酶的表达都会降低神经元特异性钾氯共转运体2型(KCC2)的转运功能。我们的数据与WNK4与SPAK相互作用一致,SPAK进而磷酸化并激活NKCC1,磷酸化并使KCC2失活。