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Multiple Developmental Roles for CRAC, a Cytosolic Regulator of Adenylyl Cyclase

机译:CRAC,​​腺苷酸环化酶的胞质调节剂的多重发展作用。

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Receptor-mediated activation of adenylyl cyclase (ACA) in Dictyostelium requires CRAC protein. Upon translocation to the membrane, this pleckstrin homology (PH) domain protein stimulates ACA and thereby mediates developmental aggregation. CRAC may also have roles later in development since CRAC-null cells can respond to chemotactic signals and participate in developmental aggregation when admixed with wild-type cells, but they do not complete development within such chimeras. To test whether the role of CRAC in postaggregative development is related to the activation of ACA, chemotactic aggregation was bypassed in CRAC-null cells by activating the cAMP-dependent protein kinase (PKA). While such strains formed mounds, they did not complete fruiting body morphogenesis or form spores. Expression of CRAC in the prespore cells of these strains rescued sporulation and fruiting body formation. This later function of CRAC does not appear to require its PH domain since the C-terminal portion of the protein (CRAC-#DELTA#PH) can substitute for full-length CRAC in promoting spore cell formation and morphogenesis. No detectable ACA activation was observed in any of the CRAC-null strains rescued by PKA activation and expression of CRAC-#DELTA#PH. Finally, we found that the development of CRAC-null ACA-null double mutants could be rescued by the activation of PKA together with the expression of CRAC-#DELTA#PH. Thus, there appears to be a required function for CRAC in postaggregative development that is independent of its previously described function in the ACA activation pathway.
机译:Dictyostelium中的受体介导的腺苷酸环化酶(ACA)激活需要CRAC蛋白。易位到膜上后,该pleckstrin同源性(PH)域蛋白刺激ACA,从而介导发育聚集。 CRAC在以后的发育中也可能发挥作用,因为与野生型细胞混合时,无CRAC的细胞可以响应趋化信号并参与发育聚集,但它们无法在这种嵌合体中完成发育。为了测试CRAC在聚集后发育中的作用是否与ACA的激活有关,通过激活cAMP依赖性蛋白激酶(PKA)在CRAC空细胞中绕过趋化性聚集。尽管这些菌株形成丘,但它们没有完成子实体的形态发生或形成孢子。这些菌株的孢子前细胞中的CRAC表达挽救了孢子形成和子实体的形成。 CRAC的此后续功能似乎不需要其PH结构域,因为蛋白质的C端部分(CRAC-#DELTA#PH)可以替代全长CRAC来促进孢子细胞的形成和形态发生。在通过PKA活化和CRAC-#DELTA#PH表达拯救的任何CRAC空菌株中均未观察到可检测到的ACA活化。最后,我们发现可以通过激活PKA以及CRAC-#DELTA#PH的表达来拯救CRAC-null ACA-null双重突变体的发展。因此,在聚集后的发育中似乎存在CRAC所需的功能,而与CAC激活途径中先前描述的功能无关。

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