拟南芥母体效应胚胎抑制蛋白是一种腺苷酸环化酶,在胚胎发育和对非生物胁迫的反应中具有预测作用

D. Kawadza, T. Dikobe, Patience Chatukuta, M. Takundwa, E. Bobo, Katlego S. Sehlabane, O. Ruzvidzo
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引用次数: 1

摘要

第二信使在连接环境刺激和细胞反应方面起着关键作用。腺苷酸环化酶(AC)产生的3′,5′-环腺苷单磷酸(cAMP)是其中的一种信使分子,在高等植物的生长、发育和逆境反应等许多生理过程中都是必不可少的信号分子。迄今为止,在植物中发现的ac很少,因此需要寻找更多的ac。目的检测拟南芥MEE (AtMEE)蛋白可能的AC活性,并从生物信息学角度推断其功能。我们克隆了At2g34780基因编码的AtMEE蛋白的截断版本,其中包含了AC催化中心(AtMEE-AC),并在BL21 Star pLysS大肠杆菌细胞中表达,随后使用镍-腈乙酸(Ni-NTA)亲和体系纯化。用酶免疫法测定纯化蛋白的体外AC活性。AtMEE-AC蛋白也在SP850突变型大肠杆菌菌株中表达,随后(目视)评估其补足该突变型ac缺乏症(cyaA突变)的能力。最后,对AtMEE蛋白进行生物信息学分析,推断其可能的生物学功能。AtMEE是一种AC分子,其体外活性依赖于Mn2+,并受NaF的正向调节。此外,AtMEE能够补充SP850突变株中的ac缺乏症(cyaA)突变。AtMEE主要参与胚胎发育,也通过cAMP信号传导的MYB表达核心基序特异性表达以应对非生物胁迫。
AtMEE是一种AC蛋白,其功能与胚胎发育和对非生物胁迫的反应有关。
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An Arabidopsis Maternal Effect Embryo Arrest Protein is an Adenylyl Cyclase with Predicted Roles in Embryo Development and Response to Abiotic Stress
Second messengers have a key role in linking environmental stimuli to cellular responses. One such messenger, 3′,5′-cyclic adenosine monophosphate (cAMP) generated by adenylyl cyclase (AC), has long been established as an essential signaling molecule in many physiological processes of higher plants, including growth, development and stress response. To date, very few ACs have been identified in plants, thus a need to search for more. To test the probable AC activity of an Arabidopsis MEE (AtMEE) protein and infer its function bioinformatically. A truncated version of the AtMEE protein (encoded by At2g34780 gene) harboring the annotated AC catalytic center (AtMEE-AC) was cloned and expressed in BL21 Star pLysS Escherichia coli cells followed by its purification using the nickel-nitriloacetic acid (Ni-NTA) affinity system. The purified protein was tested for its probable in vitro AC activity by enzyme immunoassay. The AtMEE-AC protein was also expressed in the SP850 mutant E. coli strain, followed by assessment (visually) of its ability to complement the AC-deficiency (cyaA mutation) in this mutant. Finally, the AtMEE protein was analyzed bioinformatically to infer its probable biological function(s). AtMEE is an AC molecule, whose in vitro activity is Mn2+-dependent and positively modulated by NaF. Moreover, AtMEE is capable of complementing the AC-deficiency (cyaA) mutation in the SP850 mutant strain. AtMEE is primarily involved in embryo development and also specifically expressed in response to abiotic stress via the MYB expression core motif signaled by cAMP. 
AtMEE is an AC protein, whose functions are associated with embryo development and response to abiotic stress.
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