首页> 外文OA文献 >Nerve Growth Factor Inhibits Na+/H+ Exchange and \documentclass[10pt]{article} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{pmc} \usepackage[Euler]{upgreek} \pagestyle{empty} \oddsidemargin -1.0in \begin{document} \begin{equation*}{\mathrm{HCO}}_{3}^{-}\end{equation*}\end{document} Absorption through Parallel Phosphatidylinositol 3-Kinase-mTOR and ERK Pathways in Thick Ascending Limb*
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Nerve Growth Factor Inhibits Na+/H+ Exchange and \documentclass[10pt]{article} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{pmc} \usepackage[Euler]{upgreek} \pagestyle{empty} \oddsidemargin -1.0in \begin{document} \begin{equation*}{\mathrm{HCO}}_{3}^{-}\end{equation*}\end{document} Absorption through Parallel Phosphatidylinositol 3-Kinase-mTOR and ERK Pathways in Thick Ascending Limb*

机译:神经生长因子抑制Na + / H +交换和 \ documentclass [10pt] {article} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ usepackage {pmc} \ usepackage [Euler] {upgreek} \ pagestyle {空} \ oddsidemargin -1.0英寸 \ begin {document} \ begin {equation *} {\ mathrm {HCO}} _ {3} ^ {-} \ end {equation *} \ end {document}通过并行吸收 磷脂酰肌醇3-激酶-mTOR和ERK通路在浓厚上升。 肢*

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In the medullary thick ascending limb, inhibiting the basolateral NHE1 Na+/H+ exchanger with nerve growth factor (NGF) induces actin cytoskeleton remodeling that secondarily inhibits apical NHE3 and transepithelial \documentclass[10pt]{article}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\usepackage{pmc}\usepackage[Euler]{upgreek}\pagestyle{empty}\oddsidemargin -1.0in\begin{document}\begin{equation*}{\mathrm{HCO}}_{3}^{-}\end{equation*}\end{document} absorption. The inhibition by NGF is mediated 50% through activation of extracellular signal-regulated kinase (ERK). Here we examined the signaling pathway responsible for the remainder of the NGF-induced inhibition. Inhibition of \documentclass[10pt]{article}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\usepackage{pmc}\usepackage[Euler]{upgreek}\pagestyle{empty}\oddsidemargin -1.0in\begin{document}\begin{equation*}{\mathrm{HCO}}_{3}^{-}\end{equation*}\end{document} absorption was reduced 45% by the phosphatidylinositol 3-kinase (PI3K) inhibitors wortmannin or LY294002 and 50% by rapamycin, a specific inhibitor of mammalian target of rapamycin (mTOR), a downstream effector of PI3K. The combination of a PI3K inhibitor plus rapamycin did not cause a further reduction in the inhibition by NGF. In contrast, the combination of a PI3K inhibitor plus the MEK/ERK inhibitor U0126 completely eliminated inhibition by NGF. Rapamycin decreased NGF-induced inhibition of basolateral NHE1 by 45%. NGF induced a 2-fold increase in phosphorylation of Akt, a PI3K target linked to mTOR activation, and a 2.2-fold increase in the activity of p70 S6 kinase, a downstream effector of mTOR. p70 S6 kinase activation was blocked by wortmannin and rapamycin, consistent with PI3K, mTOR, and p70 S6 kinase in a linear pathway. Rapamycin-sensitive inhibition of NHE1 by NGF was associated with an increased level of phosphorylated mTOR in the basolateral membrane domain. These findings indicate that NGF inhibits \documentclass[10pt]{article}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\usepackage{pmc}\usepackage[Euler]{upgreek}\pagestyle{empty}\oddsidemargin -1.0in\begin{document}\begin{equation*}{\mathrm{HCO}}_{3}^{-}\end{equation*}\end{document} absorption in the medullary thick ascending limb through the parallel activation of PI3K-mTOR and ERK signaling pathways, which converge to inhibit NHE1. The results identify a role for mTOR in the regulation of Na+/H+ exchange activity and implicate NHE1 as a possible downstream effector contributing to mTOR's effects on cell growth, proliferation, survival, and tumorigenesis.
机译:在延髓较厚的上肢中,用神经生长因子(NGF)抑制基底外侧NHE1 Na + / H +交换子可诱导肌动蛋白细胞骨架重塑,继而抑制根尖NHE3和经上皮\ documentclass [10pt] {article} \ usepackage {amsmath} \ usepackage {wasysym } \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ usepackage {pmc} \ usepackage [Euler] {upgreek} \ pagestyle {empty} \ oddsidemargin -1.0in \ begin {document} \开始{equation *} {\ mathrm {HCO}} _ {3} ^ {-} \ end {equation *} \ end {document}吸收。 NGF的抑制作用是通过激活细胞外信号调节激酶(ERK)介导的。在这里,我们检查了负责NGF诱导抑制的其余部分的信号通路。禁止\ documentclass [10pt] {article} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ usepackage {pmc} \ usepackage [Euler] {upgreek} \ pagestyle {empty} \ oddsidemargin -1.0in \ begin {document} \ begin {equation *} {\ mathrm {HCO}} _ {3} ^ {-} \ end {equation *} \ end {document}磷脂酰肌醇3-激酶(PI3K)抑制剂渥曼青霉素或LY294002可使吸收降低45%,雷帕霉素是哺乳动物靶标雷帕霉素(mTOR)的特异性抑制剂雷帕霉素(PI3K的下游效应物),吸收降低50%。 PI3K抑制剂与雷帕霉素的组合并未导致NGF的抑制作用进一步降低。相反,PI3K抑制剂与MEK / ERK抑制剂U0126的组合完全消除了NGF的抑制作用。雷帕霉素使NGF诱导的基底外侧NHE1抑制降低45%。 NGF诱导了与mTOR活化相关的PI3K靶标Akt的磷酸化增加了2倍,而mTOR的下游效应物p70 S6激酶的活性增加了2.2倍。 p70 S6激酶的激活被渥曼青霉素和雷帕霉素阻断,与PI3K,mTOR和p70 S6激酶的线性途径一致。 NGF对雷帕霉素敏感的NHE1抑制与基底外侧膜结构域中磷酸化的mTOR水平升高有关。这些发现表明NGF禁止\ documentclass [10pt] {article} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ usepackage {pmc} \ usepackage [Euler] {upgreek} \ pagestyle {empty} \ oddsidemargin -1.0in \ begin {document} \ begin {equation *} {\ mathrm {HCO}} _ {3} ^ {-} \ end {equation *} \通过并行激活PI3K-mTOR和ERK信号传导途径的并行激活,在髓质厚的上升肢体中吸收,收敛抑制NHE1。结果确定了mTOR在调节Na + / H +交换活性中的作用,并暗示NHE1是可能的下游效应子,有助于mTOR对细胞生长,增殖,存活和肿瘤发生的作用。

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