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Rescue of the learning defect in dunce, a Drosophila learning mutant, by an allele of rutabaga, a second learning mutant.

机译:通过第二个学习突变体大头菜等位基因拯救果蝇学习突变体dunce的学习缺陷。

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摘要

rutabaga1 (rut1), a Drosophila learning mutant, has adenylate cyclase (EC 4.6.1.1) with reduced basal activity and the absence of calcium/calmodulin-stimulated activity. A second learning mutant, dunce, is defective in cyclic AMP degradation due to decreased or absent phosphodiesterase activity. These opposing biochemical defects allow rut1 to partially suppress the female sterility caused by elevated cyclic AMP levels in dunce flies. Selection of mutations that suppress dunce sterility has led to the isolation of two rutabaga alleles. The alleles (rut2 and rut3) decrease basal adenylate cyclase activity [Bellen, H. J., Gregory, B. K., Olsson, C. L. & Kiger, J. A. (1987) Dev. Biol. 121, 432-444] but, unlike the original rutabaga mutation, leave the calcium/calmodulin-stimulated activity intact. Behaviorally, the two alleles also differ from rut1. One of the mutations partially rescues the dunce learning defect, and flies bearing both alleles learn. Calcium responsiveness may thus be the crucial component of adenylate cyclase activity required for associative learning.
机译:果蝇学习突变体rutabaga1(rut1)具有腺苷酸环化酶(EC 4.6.1.1),其基础活性降低,并且缺乏钙/钙调蛋白刺激的活性。第二个学习突变体dunce由于磷酸二酯酶活性降低或缺乏而在环AMP降解方面存在缺陷。这些相反的生化缺陷使rut1可以部分抑制由于by蝇中环状AMP含量升高而引起的雌性不育。选择抑制杜邦不育的突变导致了两个大头菜等位基因的分离。等位基因(rut2和rut3)降低了基础腺苷酸环化酶的活性[Bellen,H. J.,Gregory,B.K.,Olsson,C.L.&Kiger,J.A.(1987)Dev。生物学121,432-444],但与原始的大头菜突变不同,它不影响钙/钙调蛋白刺激的活性。从行为上讲,这两个等位基因也与rut1不同。突变之一部分挽救了笨蛋学习缺陷,并携带两个等位基因学习的苍蝇。因此,钙反应性可能是联想学习所需的腺苷酸环化酶活性的关键组成部分。

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    Feany, M B;

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  • 年度 1990
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