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The function of the mlr6793 gene from Mesorhizobium loti MAFF303099 has been identified. This gene encodes 4-pyridoxic acid dehydrogenase, an enzyme involved in the catabolism of PLP (Vitamin B6). This enzyme was overexpressed in Escherichia coli and characterized. 4-Pyridoxic acid dehydrogenase is a 33kDa protein that catalyzes the four electron oxidation of 4-pyridoxic acid to 3-hydroxy-2-methylpyridine-4,5-dicarboxylate, using nicotinamide adenine dinucleotide as a cofactor. The k cat for NADH production is 0.01s(-1). The KM values for 4-pyridoxic acid and NAD are 5.8 and 6.6microM, respectively.  相似文献   

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The gene encoding 4-pyridoxic acid dehydrogenase was identified as mlr6792 in a chromosome of a nitrogen-fixing symbiotic bacterium Mesorhizobium loti MAFF303099. The enzyme is the fourth enzyme in the vitamin B(6) (pyridoxine)-degradation pathway I. The recombinant enzyme with a his-tag over-expressed in Escherichia coli cells was a membrane-bound protein, and purified to homogeneity. The enzyme was a monomeric protein with a molecular weight of 59,000, and a flavoprotein containing one mole of FAD per mole of subunit. The optimum pH and temperature, and K(m) for 4-pyridoxic acid were pH 8.5 and 30 degrees C, and 29 muM, respectively. The enzyme was a glucose-methanol-choline (GMC) family protein with two signature patterns, FAD-binding residues, a putative active site histidine residue and a probable transmembrane segment.  相似文献   

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热激蛋白70(hsp70s)具有分子伴侣的功能,其中在非胁迫条件下表达的hsp70s称为热激同源蛋白70(hsc70).为更好地了解hsc70基因的特性,鉴定了盐芥(Thellungiella halophila(C.A.Mey.)O.E. Schulz)中编码胞质hsc70蛋白的基因Thhsc70.实验结果表明:在非胁迫条件下,Thhsc70基因具有组织特异性表达;Thhsc70基因受热胁迫和冷胁迫的诱导表达,但几乎不受盐诱导和干旱诱导.Thhsc70基因在拟南芥中过量表达后提高了转基因拟南芥的热耐受性和冷耐受性.  相似文献   

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热激蛋白70(hsp70s)具有分子伴侣的功能,其中在非胁迫条件下表达的hsp70s称为热激同源蛋白70(hsc70)。为更好地了解hsc70基因的特性,鉴定了盐芥(Thellungiella halophila(C. A. Mey. )O. E. Schulz)中编码胞质hsc70蛋白的基因Thhsc70。实验结果表明:在非胁迫条件下,Thhsc70基因具有组织特异性表达;Thhsc70基因受热胁迫和冷胁迫的诱导表达,但几乎不受盐诱导和干旱诱导。Thhsc70基因在拟南芥中过量表达后提高了转基因拟南芥的热耐受性和冷耐受性。  相似文献   

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The protein quality control (PQC) system maintains protein homeostasis by counteracting the accumulation of misfolded protein conformers. Substrate degradation and refolding activities executed by ATP-dependent proteases and chaperones constitute major strategies of the proteostasis network. Small heat shock proteins represent ATP-independent chaperones that bind to misfolded proteins, preventing their uncontrolled aggregation. sHsps share the conserved α-crystallin domain (ACD) and gain functional specificity through variable and largely disordered N- and C-terminal extensions (NTE, CTE). They form large, polydisperse oligomers through multiple, weak interactions between NTE/CTEs and ACD dimers. Sequence variations of sHsps and the large variability of sHsp oligomers enable sHsps to fulfill diverse tasks in the PQC network. sHsp oligomers represent inactive yet dynamic resting states that are rapidly deoligomerized and activated upon stress conditions, releasing substrate binding sites in NTEs and ACDs Bound substrates are usually isolated in large sHsp/substrate complexes. This sequestration activity of sHsps represents a third strategy of the proteostasis network. Substrate sequestration reduces the burden for other PQC components during immediate and persistent stress conditions. Sequestered substrates can be released and directed towards refolding pathways by ATP-dependent Hsp70/Hsp100 chaperones or sorted for degradation by autophagic pathways. sHsps can also maintain the dynamic state of phase-separated stress granules (SGs), which store mRNA and translation factors, by reducing the accumulation of misfolded proteins inside SGs and preventing unfolding of SG components. This ensures SG disassembly and regain of translational capacity during recovery periods.  相似文献   

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番茄线粒体和内质网小分子热激蛋白基因的分子克隆   总被引:10,自引:0,他引:10  
以热激处理的番茄(Lycopersicon esculentum Mill.)花为实验材料,构建了cDNA库,运用RT-PCR方法克隆番茄粒体和内质网小分子热激蛋白cDNA,利用这两个保守区片段为探针,筛选cDNA库,获得线粒体和内质网小分子热激蛋白全序列cDNA。;通过分析线粒体和内质网小分子热激蛋白基因对温度的反应,发现小分子热激蛋白基因在番茄花中的热激应答温度低于它们在叶片中的热激应答温度,并且番茄叶片中的线粒体小分子热激蛋白基因还具有低温应答特性。对线粒体和内质网小分子热激蛋白基因的分子结构特点,小分子热激蛋白基因在番茄花中的特别热激应答温度的调控机理以及线粒体小分子热激蛋白的基因在中片中的低温度应答成因进行了讨论。  相似文献   

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蔗糖非酵解相关蛋白激酶家族2(Sucrose Non-Fermenting Related protein Kinases 2,Sn RK2)是一类植物中高度保守的蛋白激酶,也是植物响应干旱、盐碱等导致渗透性胁迫的主要调控原件。本研究以马铃薯品种‘陇薯3号’为材料,观察试管苗在0、25、50、100、200 mmol/L Na Cl 2周、4周和6周盐胁迫下和0、2%、4%、6%、8%PEG 2周、4周和6周干旱胁迫下马铃薯地上部分组织中StSnRK2基因的表达模式。结果显示,盐和干旱胁迫下马铃薯StSnRK2基因表达模式不尽相同:在盐胁迫下StSnRK2.4和StSnRK2.6表达均上调;干旱胁迫下StSnRK2.3的表达量上升,而且随PEG浓度的增加StSnRK2.3表达量也随之增高;同一基因在不同胁迫处理下表达趋势也有差异,StSnRK2.5基因在盐胁迫下表达下调,在干旱胁迫下StSnRK2.5基因表达量高于对照;不同胁迫处理下基因的表达与生理指标的相关性也不同,盐胁迫下,StSnRK2.6基因与CAT和SOD活性呈极显著正相关,与气孔面积呈显著负相关,干旱胁迫下,StSnRK2.6基因的表达量与脯氨酸含量呈显著正相关。本文通过研究不同渗透胁迫条件下StSnRK2基因的表达模式,进一步解析了马铃薯对盐及干旱胁迫响应的机理,可为马铃薯抗逆品种的选育提供依据。  相似文献   

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A cDNA library was constructed with the heat shocked tomato (Lycopersicon esculentum Mill.) flowers and then was screened with the probes of mitochondrial and endoplasmic reticulum conservative regions that were cloned by using RT-PCR. The complete cDNAs of mitochondrial and endoplasmic reticulum small heat shock protein ( shsp ) were selected out from the cDNA library. Furthermore, the temperature responses of these shsp genes were determined. Northern hybridization showed that the heat response temperatures of both genes in tomato flower were lower than that in leaf and that mitochondria shsp in leaf was cold-inducible. In this paper, the molecular features of the cloned genes, the causes of the uncommon heat response temperatures of sHSP in flower and the cold inducible character of mitochondria shsp gene in leaf were discussed.   相似文献   

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The molecular chaperone heat shock protein 90 (HSP90) works in concert with co-chaperones to stabilize its client proteins, which include multiple drivers of oncogenesis and malignant progression. Pharmacologic inhibitors of HSP90 have been observed to exert a wide range of effects on the proteome, including depletion of client proteins, induction of heat shock proteins, dissociation of co-chaperones from HSP90, disruption of client protein signaling networks, and recruitment of the protein ubiquitylation and degradation machinery—suggesting widespread remodeling of cellular protein complexes. However, proteomics studies to date have focused on inhibitor-induced changes in total protein levels, often overlooking protein complex alterations. Here, we use size-exclusion chromatography in combination with mass spectrometry (SEC-MS) to characterize the early changes in native protein complexes following treatment with the HSP90 inhibitor tanespimycin (17-AAG) for 8 h in the HT29 colon adenocarcinoma cell line. After confirming the signature cellular response to HSP90 inhibition (e.g., induction of heat shock proteins, decreased total levels of client proteins), we were surprised to find only modest perturbations to the global distribution of protein elution profiles in inhibitor-treated HT29 cells at this relatively early time-point. Similarly, co-chaperones that co-eluted with HSP90 displayed no clear difference between control and treated conditions. However, two distinct analysis strategies identified multiple inhibitor-induced changes, including known and unknown components of the HSP90-dependent proteome. We validate two of these—the actin-binding protein Anillin and the mitochondrial isocitrate dehydrogenase 3 complex—as novel HSP90 inhibitor-modulated proteins. We present this dataset as a resource for the HSP90, proteostasis, and cancer communities (https://www.bioinformatics.babraham.ac.uk/shiny/HSP90/SEC-MS/), laying the groundwork for future mechanistic and therapeutic studies related to HSP90 pharmacology. Data are available via ProteomeXchange with identifier PXD033459.  相似文献   

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The process of soil salinization and the preponderance of saline water sources all over the world represent one of the most harmful abiotic stress to plant growth. This pointed to the importance of obtaining plants which are tolerant or resistant to salt, considering that projection of climate change for the coming years indicate an increase in temperature and rain scarcity. In the current study, the effect of NaCl was investigated on germinating seeds of Lathyrus sativus L., Vicia sativa L., Vigna radiata L. R.Wilczek and Vigna unguiculata L. Walp., by combining physiological, biochemical, biostatistical and ultrastructural analyses. Our results revealed that germination was not influenced by high NaCl concentrations, while seedling growth was affected even at low NaCl concentrations, probably due to an alteration in water uptake and in organic matter biosynthesis. Nevertheless, the synthesis of antioxidant enzymes, phenolic acids and flavonoids was registered in all species, which tended to cope with the increasing salt stress, allowing a response mechanism such as cytoplasm detoxification and cellular turgor maintenance. Besides, the ultrastructural analysis evidenced plasmolyzed cells close to cells with a normal ultrastructure with no appreciable differences among the species. This research deeply investigates the mechanism of salt-stress response focusing on species never tested before for their possible tolerance to salinity.  相似文献   

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植物气孔对全球环境变化的响应及其调控防御机制   总被引:6,自引:0,他引:6  
气孔是植物与环境发生联系的重要门户,控制着植物与外界的气体和水分交换。本文针对全球大气CO2浓度升高、气候变暖、干旱加剧等环境问题,分析了气孔对全球水循环、碳循环的重要贡献。系统总结了气孔的形态发育和生理功能对大气高CO2浓度、干旱、土壤盐渍化、病虫害等的响应及其调控防御机制。综述了脱落酸(ABA)、Ca2+、H2O2、一氧化氮(NO)和光信号调控气孔运动的分子机制。从理论和实践两方面,提出了通过调控气孔运动协调CO2同化和水分散失的矛盾,在不影响光合效率的前提下提高水分利用率等未来的研究方向。  相似文献   

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为了研究谷胱甘肽S-转移酶基因(GST)家族在甜菜(Beta vulgaris)中对其生长发育及受到非生物胁迫时的潜在功能,以甜菜BvGSTs家族为研究对象,对其理化性质、进化关系、顺式作用元件、染色体定位及在镉胁迫下的转录表达特性进行深入地分析。结果表明:甜菜基因组中共有52个BvGSTs基因家族成员,分布于7个亚家族中;它们的相对分子质量在17~28 kDa,理论等电点pI在5.16~6.77,大部分成员定位于细胞质。BvGSTs结构中共发现9个motif,其中motif 8为Phi亚家族所特有。30个BvGSTs分别位于8条甜菜染色体,存在4处串联重复。根据顺式作用元件分析,甜菜BvGSTs可参与多种生物与非生物胁迫响应。转录组学分析发现全部52个BvGSTs均不同程度的参与到甜菜对镉胁迫的应答过程。其中在地下部,大多数Tau亚家族成员的表达受到镉胁迫的正向调控;在地上部,Phi亚家族受镉胁迫的显著诱导,Tau亚家族的表达被抑制。qRT-PCR分析表明,4个差异表达显著的BvGSTs的转录受到了镉胁迫调控,并与转录组测序结果相符。上述结果为进一步对甜菜谷胱甘肽S-转移酶在镉胁迫过...  相似文献   

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Our knowledge base involving the biochemical participants of epigenetic control has expanded greatly over the last decade. The role of epigenetic marks to DNA and histones controlled by non-coding RNAs is one of the most intensely studied areas of biology today. This review covers many of the mechanisms that non-coding RNAs and other molecules use to control gene expression and eventually affect responses to the environment. In the first part of the review, we discuss the array of covalent modifications to the genome that constitute the epigenome, which consists of the histone variants, covalent modifications, and post-translational modifications that result in gene expression changes. How the histone variants and post-translational modifications including, acetylation, methylation, phosphorylation, ubiquitination and sumoylation help form the epigenome is also summarized. Our eventual understanding of how the environment controls these modifications will open incredible opportunities in agriculture, medicine and the development of practical tools for biology. In the second part of this review we discuss the growing list of environmentally-mediated epigenetic modifications, and examples of transgenerational epigenetic inheritance events, that may begin to change our views of adaptive responses to the environment and evolution.  相似文献   

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