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在多肽激素受体功能上受影响的LLC - PK1突变体之间的互补作用。

Complementation between LLC-PK1 mutants affected in polypeptide hormone-receptor function.

作者信息

Jans D A, Resink T J, Hemmings B A

出版信息

Eur J Biochem. 1987 Feb 2;162(3):571-6. doi: 10.1111/j.1432-1033.1987.tb10677.x.

Abstract

The mutant LLC-PK1 cell lines FIB6 and FIB5/N4 were examined for responsiveness to the polypeptide hormones calcitonin and vasopressin. Both mutants exhibited little or no activation of adenylate cyclase or cAMP-dependent protein kinase (cAMP-PK) in response to calcitonin, but responded to vasopressin. Analysis of calcitonin receptor function demonstrated that both mutants bound less than 9 fmol 125I-labeled salmon calcitonin/mg cellular protein, which was about 1% of parental activity (642 fmol calcitonin bound/mg). Concomitant with reduced calcitonin binding, both mutants exhibited increased vasopressin binding (greater than 272 fmol [[3H]Arg]vasopressin bound/mg) compared to parental (166 fmol bound/mg). The concentration of vasopressin for half-maximal stimulation of adenylate cyclase in both mutants was comparable to that for LLC-PK1 cells (40 pM) and hence the increased binding activity was concluded to be due to increased numbers of functional vasopressin receptors in the mutants. Somatic cell hybrids formed between each mutant and LLC-PK1 cells exhibited normal hormone binding and activation of cAMP-PK in response to both vasopressin and calcitonin. The mutations affecting receptor function in FIB6 and FIB5/N4 were accordingly concluded to be recessive. Somatic cell hybrids between FIB6 and FIB5/N4 showed no complementation of the mutant phenotype, indicating that both cell lines were affected in the same gene. In contrast, somatic cell hybrids between FIB5/N4 and the 'receptorless' mutant M18 (which lacks functional calcitonin and vasopressin receptors) exhibited approximately the same responsiveness to vasopressin and to calcitonin as LLC-PK1. Complementation between two different mutations affecting polypeptide receptor function was thus observed. The results are discussed in terms of a proposed common pathway for processing of calcitonin and vasopressin receptors.

摘要

对突变型LLC - PK1细胞系FIB6和FIB5/N4进行了检测,以观察它们对多肽激素降钙素和血管加压素的反应性。两种突变体对降钙素的反应几乎没有或完全没有激活腺苷酸环化酶或cAMP依赖性蛋白激酶(cAMP - PK),但对血管加压素起反应。降钙素受体功能分析表明,两种突变体结合的125I标记鲑鱼降钙素均少于9 fmol/mg细胞蛋白,这约为亲本活性(642 fmol降钙素结合/mg)的1%。与降钙素结合减少相伴的是,与亲本(166 fmol结合/mg)相比,两种突变体均表现出血管加压素结合增加(大于272 fmol [[3H]精氨酸]血管加压素结合/mg)。两种突变体中腺苷酸环化酶半最大刺激所需的血管加压素浓度与LLC - PK1细胞相当(40 pM),因此得出结论,结合活性增加是由于突变体中功能性血管加压素受体数量增加。每个突变体与LLC - PK1细胞形成的体细胞杂种对血管加压素和降钙素均表现出正常的激素结合和cAMP - PK激活。因此得出结论,影响FIB6和FIB5/N4受体功能的突变是隐性的。FIB6和FIB5/N4之间的体细胞杂种未显示突变表型的互补,表明两种细胞系受同一基因影响。相反,FIB5/N4与“无受体”突变体M18(缺乏功能性降钙素和血管加压素受体)之间的体细胞杂种对血管加压素和降钙素的反应性与LLC - PK1大致相同。因此观察到影响多肽受体功能的两种不同突变之间的互补。根据所提出的降钙素和血管加压素受体加工的共同途径对结果进行了讨论。

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