首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >STE20/SPS1-related proline/alanine-rich kinase (SPAK) is critical for sodium reabsorption in isolated perfused thick ascending limb
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STE20/SPS1-related proline/alanine-rich kinase (SPAK) is critical for sodium reabsorption in isolated perfused thick ascending limb

机译:与STE20 / SPS1相关的脯氨酸/富含丙氨酸的激酶(SPAK)对于分离的灌注的浓厚上升肢体中钠的重吸收至关重要

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摘要

SPAK [STE20 (sterile 20)/SPS1-related proline/alanine-rich kinase] kinase consists of a full-length (FL-) and an alternatively spliced kidney-specific (KS-) isoform. SPAK regulates the NaCl cotransporter (NCC) in the distal convoluted tubule (DCT). The relative abundance and role of FL- vs. KS-SPAK in regulating Na+-K+-2Cl cotransporter (NKCC2) in thick ascending limb (TAL) are not completely understood. Here, we report that FL-SPAK mRNA was the most abundant in medullary TAL (mTAL), followed by cortical TAL (cTAL) and DCT. KS-SPAK mRNA abundance was relatively lower than FL-SPAK. The ratios of FL-SPAK to KS-SPAK in mTAL, cTAL, and DCT were 12.3, 12.5, and 10.2, respectively. To examine the role of SPAK in the regulation of sodium transport in TAL, we used in vitro microperfusion of mTAL and cTAL isolated from wild-type (WT) and SPAK knockout mice (SPAK-KO) that lack both FL- and KS-SPAK. The rates of sodium absorption in cTAL and mTAL of SPAK-KO mice were 34.5 and 12.5% of WT tubules, respectively. The mRNA levels of related OSR1 kinase and SPAK protease Dnpep in SPAK-KO tubules were not significantly different from WT tubules. We next examined the role of SPAK in the regulation of sodium reabsorption by vasopressin in TAL. Vasopressin increased sodium reabsorption by ∼80% in both mTAL and cTAL from WT mice. While baseline sodium reabsorption was lower in SPAK-KO tubules, vasopressin increased sodium reabsorption over twofold. In conclusion, the combined net effect of SPAK isoforms on sodium reabsorption in TAL is stimulatory. SPAK is not essential for vasopressin stimulation of sodium reabsorption in TAL.
机译:SPAK [STE20(无菌20)/ SPS1相关的脯氨酸/富含丙氨酸的激酶]激酶由全长(FL-)和选择性剪接的肾脏特异性(KS-)同工型组成。 SPAK调节远曲曲小管(DCT)中的NaCl共转运蛋白(NCC)。 FL- vs. KS-SPAK在调节Na + -K + -2Cl -共转运蛋白(NKCC2)中的相对丰度和作用升肢(TAL)尚未完全了解。在这里,我们报道FL-SPAK mRNA在髓质TAL(mTAL)中含量最高,其次是皮质TAL(cTAL)和DCT。 KS-SPAK mRNA丰度相对低于FL-SPAK。在mTAL,cTAL和DCT中FL-SPAK与KS-SPAK的比率分别为12.3、12.5和10.2。为了检查SPAK在调节TAL中钠转运中的作用,我们使用了从缺乏FL-和KS-SPAK的野生型(WT)和SPAK基因敲除小鼠(SPAK-KO)中分离的mTAL和cTAL的体外微灌流。 SPAK-KO小鼠的cTAL和mTAL中的钠吸收率分别为WT小管的34.5和12.5%。 SPAK-KO小管中相关OSR1激酶和SPAK蛋白酶Dnpep的mRNA水平与WT小管无显着差异。接下来,我们检查了SPAK在TAL中加压素对钠再吸收的调节中的作用。加压素使野生型小鼠的mTAL和cTAL中的钠重吸收增加约80%。在SPAK-KO小管中,基线钠的重吸收较低,而加压素使钠的重吸收增加了两倍。总之,SPAK同工型对TAL中钠重吸收的综合净效应是刺激性的。 SPAK对血管加压素刺激TAL中钠的重吸收不是必需的。

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