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Adenylate cyclases: Receivers, transducers, and generators of signals

机译:腺苷酸环酶:信号的接收器,换能器和发电机

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摘要

Class III adenylate cyclases (ACs) are widespread signaling proteins, which translate diverse intracellular and extracellular stimuli into a uniform intracellular signal. They are typically composed of an N-terminal array of input domains and transducers, followed C-terminally by a catalytic domain, which, as a dimer, generates the second messenger cAMP. The input domains, which receive stimuli, and the transducers, which propagate the signals, are often found in other signaling proteins. The nature of stimuli and the regulatory mechanisms of ACs have been studied experimentally in only a few cases, and even in these, important questions remain open, such as whether eukaryotic ACs regulated by G protein-coupled receptors can also receive stimuli through their own membrane domains. Here we survey the current knowledge on regulation and intramolecular signal propagation in ACs and draw comparisons to other signaling proteins. We highlight the pivotal role of a recently identified cyclase-specific transducer element located N-terminally of many AC catalytic domains, suggesting an intramolecular signaling capacity.
机译:III类腺苷酸环酶(ACS)是广泛的信号蛋白,其将不同的细胞内和细胞外刺激转化为均匀的细胞内信号。它们通常由输入域的N末端阵列和换能器组成,伴随催化结构域之后的C末期,作为二聚体,产生第二信使。接受刺激的输入域和传播信号的换能器通常在其他信号蛋白中发现。刺激的性质和ACS的调节机制已经在实验中进行了实验,甚至在这些情况下,重要的问题仍然保持开放,例如由G蛋白偶联受体调节的真核ACS是否也可以通过自己的膜接受刺激域名。在这里,我们调查了关于ACS中调节和分子内信号传播的目前的知识,并将比较与其他信号蛋白一起进行比较。我们突出了最近鉴定的环酶特异性换能器元件的枢转作用位于许多交流催化结构域的N-末端,表明分子内信号传导能力。

著录项

  • 来源
    《Cellular Signalling》 |2018年第2018期|共10页
  • 作者单位

    Max Planck Inst Entwicklungsbiol Abt Proteinevolut Max Planck Ring 5 D-72076 Tubingen Germany;

    Univ Tubingen Pharmazeut Inst Morgenstelle 8 D-72076 Tubingen Germany;

    Max Planck Inst Entwicklungsbiol Abt Proteinevolut Max Planck Ring 5 D-72076 Tubingen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞形态学;
  • 关键词

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