RENAL PROXIMAL TUBULE TRANSPORT--HORMONAL REGULATION
RENAL PROXIMAL TUBULE TRANSPORT--HORMONAL REGULATION
批准号:
3463896
负责人:
Richard Tyler Miller
金额:
$10.39万
依托单位国家:
美国
项目类别:
财政年份:
1989
资助国家:
美国
项目状态:
已结题
起止时间:
1989-08-01 至 1994-07-31
关键词:
G protein adenylate cyclase adrenergic receptor angiotensin II antiport apical membrane calcium channel cell line genetic manipulation hormone regulation /control mechanism in situ hybridization oligonucleotides parathyroid hormones phospholipase A2 phospholipase C potassium channel renal cortex renal tubular transport sodium channel western blottings
中文摘要
本申请中提出的研究旨在检查G
调节肾脏转运的蛋白质依赖机制
近端小管(PT)。氯化钠和碳酸氢钠的转运是相互调节的
通过像血管紧张素II(AngII)和一种激动剂这样的激素来增加它,
而甲状旁腺素则会降低它。这些荷尔蒙的受体是通过
G蛋白转化为酶或离子通道,从而产生其生物效应。
由G蛋白(效应物)调节的酶和离子通道可能
包括腺酰环化酶(AC)、磷脂酶A2和C(PLA2和PLC),以及
钾通道和钙通道。大多数荷尔蒙调节某些激素,但不是全部。
效应器。信号通路的特异性是如何确定的,如何
效应器是受调控的,而G蛋白的具体作用尚不清楚。
血管紧张素转换酶和甲状旁腺素等激素激活了PT中的多个效应器,但
目前尚不清楚一种G蛋白是激活一个还是多个效应器。它是
也不清楚单个G蛋白是与一个还是多个受体偶联。
本申请中提出的研究将解决以下问题:1)
大鼠肾脏切片原位杂交研究
六种G蛋白(Gs、Gil-3、Go和Gz)的寡核苷酸探针将
确定哪些G蛋白在PT中表达。2)Western blotting
肾皮质基底外侧膜(BLMV)和刷状缘膜(BBMV)
蛋白特异性抗血清将确定G蛋白在体内的分布
甲状旁腺的根尖膜和基底侧膜。3)效应器(AC、PLA2、
PLC,以及K和Ca通道),受G蛋白表达的调节
PT将通过表达突变的、成分活性的G来确定
类PT连续细胞系(OK、BSC-1或永生化)中的蛋白质
原代培养),并测量潜在效应者的活动。
纯化的、预活化的重组G蛋白将被重组为
测定BLMV、BBMV及钾、钙通道活动。4)G
在BLMV和BBMV中将建立蛋白质-受体偶联
一种生化分析方法,用于鉴定一种G蛋白,这种G蛋白由一种
受体,或通过表达具有异常受体的突变G蛋白
在一个连续的肾细胞系中偶联。甲状旁腺素、血管紧张素转换酶和肾上腺素能
将对激动剂进行研究。5)这些G蛋白依赖的能力
将通过测量建立用于规范运输的信号系统
细胞内Na/H逆向转运体、Na/3HCO3共转运体与Na,KATPase活性
表达活化G蛋白和膜囊泡的研究
预活化的重组G蛋白。这些研究将提供更好的
了解PT-氯化钠和NaHCO3转运是如何调节的,以及如何
确定了G蛋白依赖的信号转导的特异性。
英文摘要
The studies proposed in this application are designed to examine G
protein-dependent mechanisms by which transport is regulated in the renal
proximal tubule (PT). NaCl and NaHCO3 transport is reciprocally regulated
by hormones like angiotensin II (AngII) and a agonists which increase it,
and by PTH which decreases it. Receptors for these hormones are coupled by
G proteins to enzymes or ion channels which produce their biologic effects.
The enzymes and ion channels regulated by G proteins (effectors) may
include adenylyl cyclase (AC), phospholipases A2 and C (PLA2 and PLC), and
K and Ca channels. Most hormones regulate some, but not all of these
effectors. How the specificity of the signalling pathway is determined, how
effectors are regulated, and by which G proteins is not known in detail.
Hormones such as AngII and PTH activate multiple effectors in the PT, but
it is not clear if one G protein activates one or multiple effectors. It is
also not clear if a single G protein couples to one or multiple receptors.
The studies proposed in this application will address these questions: 1)
In situ hybridization studies in sections of rat kidneys using
oligonucleotide probes to six G proteins (Gs, Gil-3, Go, and Gz) will
determine which G proteins are expressed in the PT. 2) Western blotting of
renal cortical basloateral (BLMV) and brush border membranes (BBMV) with G
protein-specific antisera will establish the distribution of G proteins on
the apical and basolateral membranes of the PT. 3) The effectors (AC, PLA2,
PLC, and K and Ca channels), regulated by the G proteins expressed in the
PT will be determined by expressing mutant, constitutively active G
proteins in PT-like continuous cell lines (OK, BSC-1, or immortalized
primary cultures), and measuring the activity of the potential effectors.
Purified, preactivated recombinant G proteins will be reconstituted into
BLMV and BBMV, and K and Ca channel activity measured. 4) G
protein-receptor coupling will be established in BLMV and BBMV using
biochemical assays that identify a G protein that is activated by a
receptor, or by expressing a mutant G protein with abnormal receptor
coupling in a continuous renal cell line. PTH, AngII, and a adrenergic
agonists will be studied. 5) The ability of these G protein-dependent
signalling systems to regulate transport will be established by measuring
Na/H antiporter, Na/3HCO3 cotransporter, and Na,KATPase activity in cells
expressing activated G proteins and membrane vesicles containing
preactivated, recombinant G proteins. These studies will provide a better
understanding of how PT NaCl and NaHCO3 transport is regulated, and how
specificity for G protein-dependent signalling is determined.
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资助金额:$21.93万
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G PROTEIN-DEPENDENT SIGNALING IN RENAL EPITHELIAL CELLS
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依托单位:
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依托单位:
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资助金额:$8.93万
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依托单位:
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批准号:3463894
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资助金额:$9.08万
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批准号:3463897
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资助金额:$10.4万
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依托单位:
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批准号:3463898
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资助金额:$10.4万
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负责人:Richard Tyler Miller
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依托单位:
海外基金