Hasan Can, Ilhan Dogan, Fatih Tabanli, Mehmet Emin Uras, Asli Hocaoglu-Ozyigit, Ibrahim Ilker Ozyigit
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引用次数: 0
Abstract
MAPKs are one of the essential signal transduction complexes which are responsible for the perception of abiotic stress and for the producing of related transcripts for responding to abiotic stress. For systematical analyzes of the mitogen-activated protein (MAP) kinase gene families and their expression profiles in Solanum lycopersicum L. exposed to diverse heavy metal stresses, 17 SlMAPK genes were studied in comparison with their 159 orthologs from various plant species. The result of phylogenetic analysis revealed that SlMAPKs were divided into four different subgroups (A, B, C, and D) based on their nucleic acid and protein sequence alignments. SlMAPKs including A, B and C group had lower molecular weights and more hydrophobic structures than D group SlMAPKs, while possible extra phosphorylation sites predicted in D-group SLMAPKs. 24 cis regulating elements such as Box 4, TATA-box, ABRE and CAAT-box were detected in their upstream parts of DNA sequences. Also, it was determined that SlMAPKs show interactions with important proteins such as Guanine nucleotide-binding protein beta subunit, heterotrimeric G-protein, protein phosphatase 2C and HY5. The results from our gene expression analyzes, significant increases were found in the expressions of the selected SLMAPK gene with applications of a range of increasing heavy metal concentrations (e.g., by the application of the 400 mM Ni + Pb exposure, a 16-fold increase in the expression of SlMAPK gene was noted). Overall, SlMAPK genes and proteins known were re-evaluated, and the SlMAPKs interactions with some other important proteins were observed. Also, some predictions about the extra phosphorylation sites of SlMAPKs having effects on their functions were done. In addition, the expression levels of SlMAPK genes were monitored under different levels of heavy metal stress exposures.
MAPKs是一种重要的信号转导复合物,负责感知非生物胁迫并产生应对非生物胁迫的相关转录物。为系统分析不同重金属胁迫下番茄有丝分裂原活化蛋白(MAP)激酶基因家族及其表达谱,研究了17个SlMAPK基因与来自不同植物的159个同源基因进行了比较。系统发育分析结果显示,根据SlMAPKs的核酸和蛋白序列比对,SlMAPKs可分为A、B、C、D四个不同的亚群。包括A、B和C组的SlMAPKs比D组SlMAPKs分子量更低,疏水结构更多,同时预测D组SlMAPKs可能有额外的磷酸化位点。在DNA序列的上游部分检测到Box 4、TATA-box、ABRE、CAAT-box等24个顺式调控元件。此外,还确定SlMAPKs与鸟嘌呤核苷酸结合蛋白β亚基、异源三聚体g蛋白、蛋白磷酸酶2C和HY5等重要蛋白相互作用。我们的基因表达分析结果显示,随着重金属浓度的增加,所选SLMAPK基因的表达显著增加(例如,通过400 mM Ni + Pb暴露,SLMAPK基因的表达增加了16倍)。总的来说,我们重新评估了已知的SlMAPK基因和蛋白质,并观察了SlMAPK与其他一些重要蛋白质的相互作用。此外,对SlMAPKs的额外磷酸化位点对其功能的影响进行了一些预测。此外,我们还监测了SlMAPK基因在不同重金属胁迫水平下的表达水平。
期刊介绍:
Biotechnology Letters is the world’s leading rapid-publication primary journal dedicated to biotechnology as a whole – that is to topics relating to actual or potential applications of biological reactions affected by microbial, plant or animal cells and biocatalysts derived from them.
All relevant aspects of molecular biology, genetics and cell biochemistry, of process and reactor design, of pre- and post-treatment steps, and of manufacturing or service operations are therefore included.
Contributions from industrial and academic laboratories are equally welcome. We also welcome contributions covering biotechnological aspects of regenerative medicine and biomaterials and also cancer biotechnology. Criteria for the acceptance of papers relate to our aim of publishing useful and informative results that will be of value to other workers in related fields.
The emphasis is very much on novelty and immediacy in order to justify rapid publication of authors’ results. It should be noted, however, that we do not normally publish papers (but this is not absolute) that deal with unidentified consortia of microorganisms (e.g. as in activated sludge) as these results may not be easily reproducible in other laboratories.
Papers describing the isolation and identification of microorganisms are not regarded as appropriate but such information can be appended as supporting information to a paper. Papers dealing with simple process development are usually considered to lack sufficient novelty or interest to warrant publication.