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首页> 外文期刊>Archives of Biochemistry and Biophysics >PKB is a central molecule in the modulation of Na+-ATPase activity by albumin in renal proximal tubule cells
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PKB is a central molecule in the modulation of Na+-ATPase activity by albumin in renal proximal tubule cells

机译:PKB是通过白蛋白在肾近端小管细胞中调节Na + -AtPase活性的中央分子

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Evidence points to a possible role of tubular sodium reabsorption in worsening renal injury. Proximal tubule (PT) albumin overload is a critical process in the development of tubule-interstitial injury (TII), and consequently in progression of renal disease. We studied the possible correlation between changes in albumin concentration in the lumen of PT with modification of Na+-ATPase activity. An albumin overload animal model and LLC-PK1 cells as a model of PT cells were used. Albumin overload was induced by intraperitoneal injection of BSA in 14-week-old male Wistar rats. An increase in sodium clearance, fractional excretion of sodium, proteinuria, ratio between urinary protein and creatinine, and albuminuria were observed. These observations indicate that there could be a correlation between an increase in albumin in the lumen of PTs and renal sodium excretion. We observed that the activity of both Na+-ATPase and (Na++K+)ATPase decreased in the renal cortex of an albumin overload animal model. Using LLC-PK1 cells as a model of PT cells, inhibition of Na+-ATPase activity was observed with higher albumin concentrations, similar to that observed in the animal model. The inhibition of protein kinase B by higher albumin concentration was found to be a critical step in the inhibition of Na+-ATPase activity. Interestingly, activation of the ERK1/2/mTORC1/S6K pathway was required for protein kinase B inhibition. This mechanism leads to a decrease in protein kinase C activity and, consequently to inhibition of Na+-ATPase activity. Taken together, our results indicate that the molecular mechanism underlying the modulation of PT Na+-ATPase activity by albumin overload involves activation of the ERK1/2/mTORC1/S6K pathway, which leads to inhibition of the mTORC2/PKB/PKC pathway. Our findings contribute to better understanding regarding handing of renal Na+ induced by albumin overload in the lumen of PTs and, consequently, in the progression of renal disease.
机译:证据表明管状钠重吸收在恶化肾损伤中的可能作用。近端小管(PT)白蛋白过载是小管状损伤(TII)的发育过程中的关键过程,从而在肾病的进展中。我们研究了具有纳+ -ATPase活性的PT腔内的白蛋白浓度变化之间的可能相关性。使用白蛋白超载动物模型和LLC-PK1细胞作为Pt细胞模型。在14周龄雄性Wistar大鼠中,通过腹膜内注射BSA诱导白蛋白过载。观察到钠清除,分数排泄,尿蛋白,尿蛋白质和肌酐和菌蛋白酶之间的比例的增加。这些观察结果表明,PTS内腔中白蛋白的增加可能存在相关性和肾钠排泄物。我们观察到,Na + -AtPase和(Na ++ K +)ATP酶的活性在白蛋白过载动物模型的肾皮质中降低。使用LLC-PK1细胞作为Pt细胞的模型,用更高的白蛋白浓度观察到Na + -AtPase活性的抑制,类似于动物模型中观察到的那种。发现蛋白激酶B通过更高的白蛋白浓度抑制是抑制Na + -AtPase活性的关键步骤。有趣的是,蛋白激酶B抑制需要激活ERK1 / 2 / MTORC1 / S6K途径。该机制导致蛋白质激酶C活性的降低,并且因此抑制Na + -AtPase活性。我们的结果表明,通过白蛋白过载调制Pt Na + -AtPase活性的分子机制涉及激活ERK1 / 2 / mTORC1 / S6K途径,这导致MTORC2 / PKB / PKC途径的抑制。我们的研究结果有助于更好地了解通过在PTS内腔中的白蛋白过载引起的肾NA +的更好理解,并且因此在肾病的进展中。

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