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1.
BTB(Broad-complex, Tramtrack, and Bric-a-brac)蛋白家族存在于痘病毒以及几乎所有真核生物中,该类蛋白为多结构域蛋白,最为显著的特征是含有高度保守且能介导蛋白与蛋白间相互作用的BTB结构域。BTB蛋白具有多种功能,其功能特异性取决于BTB蛋白中其他结构域以及它的互作蛋白。BTB蛋白广泛参与转录调节,染色质重组装,细胞骨架调控和泛素化降解等过程,与胚胎发育,器官形成,信号转导以及免疫调节等生理过程密切相关。除此之外,多种疾病如癌症,神经系统和骨骼肌系统疾病等的病理过程也与BTB蛋白相关。本文以蛋白结构为基础总结了该家族的共性规律并重点论述了BTB蛋白在转录调节以及泛素化降解过程中发挥的重要作用,以期为后续研究提供重要参考。  相似文献   

2.
GASA蛋白是植物特有的一类富含半胱氨酸的小分子蛋白, 大多定位于细胞壁, 在植物生长发育和激素信号转导过程中发挥重要作用。该蛋白具有富含12个半胱氨酸残基的GASA结构域, 该结构域被认为是GASA蛋白维持空间结构和发挥功能的关键区域。该文重点综述了植物GASA蛋白的分子结构、亚细胞定位和生物学功能, 并对相关领域的研究进行了 展望。  相似文献   

3.
未知功能结构域蛋白家族(domains of unknown function protein families,DUFs)是一大群并未表征功能的蛋白家族,其蛋白结构中包含至少一个高度保守的DUF结构域。在众多的DUFs蛋白家族中存在一些植物特有的DUFs蛋白家族,其参与调控植物生长发育、植物对病虫害的防御反应和植物对非生物胁迫的应答反应等生物学过程。本文对近几年关于植物DUFs基因参与上述生物学功能方面的研究进行了综述,旨在为未知功能基因的挖掘及其调控机制的阐明提供基础资料。  相似文献   

4.
BTB(BR-C,ttk,and bab)家族是类Kuppel锌指蛋白家族中的一种,广泛存在于从酵母到人类的各种物种中,它最主要的特征是在N端至少含有一个BTB结构域.BTB结构域是在进化上高度保守的结构域,约含有115个氨基酸.越来越多的研究表明BTB蛋白在转录和调控的过程中起着重要的作用.  相似文献   

5.
在不同生物体,如病毒、植物、真菌和哺乳动物中,几百种含Kelch构象的蛋白质已经被鉴定出来了,但大部分此类蛋白质的功能未知.而在哺乳动物中,已经有接近41种Kelch蛋白被报道.这些蛋白质在体内参与了很多重要的生理过程.根据Kelch蛋白的域结构不同,把这些哺乳动物中的Kelch蛋白分成了三类(BTB/Kelch蛋白,只含有Kelch结构域的蛋白质,及含其他结构域的Kelch蛋白),并把其已知的功能大致划分为5类:介导蛋白质-蛋白质的相互作用、参与蛋白质降解、信号传导、胞外功能及其他等.另外还认为Keap 1的Kelch结构域其晶体结构应该是研究哺乳动物Kelch蛋白的一个很好的参考模型.  相似文献   

6.
ATP-结合盒(ATP-binding cassette,ABC)转运蛋白是目前已知最大、功能最广泛的蛋白质家族。多向耐药性(pleiotropic drug resistance,PDR)蛋白是该家族中仅存于植物和真菌中的一个亚族,结构域与其他亚族相反,即核苷酸结合域(nucleotide-binding domain,NBD)位于跨膜结构域(trans-membrane domain,TMD)的N端。目前已发现PDR型转运蛋白具有转运次生代谢产物和参与胁迫反应等方面的功能。植物PDR基因分为5个亚族:I族基因涉及多种生物和非生物胁迫反应,II ̄V族基因功能研究甚少。植物PDR基因在器官水平、化学及环境因素影响下具有特异性较好的表达谱。本文系统阐述了植物PDR型转运蛋白基因的进化、结构及其功能,为理解植物PDR型转运蛋白在生物分子转运和复杂生理功能方面提供一个基础框架。  相似文献   

7.
EPSPS既是植物、微生物和真菌等生物芳香族氨基酸生物合成途径——莽草酸途径中的关键酶,也是除草剂草甘膦的靶标酶。EPSPS的克隆能为草甘膦抗性转基因作物的研发提供候选基因。该研究运用比较基因组学方法,通过对41种不同植物的43条EPSPS蛋白序列进行进化分析,取得主要结果如下:(1)不同植物EPSPS蛋白的相似性很高,且具有相同的结构域、保守基序和保守位点,但是其叶绿体转运肽序列差异显著;(2)系统发育分析表明,EPSPS基因按照双子叶植物纲和单子叶植物纲分为2个大的分支,各个小的分支又按照植物的种属亲缘关系进行分支和聚类;(3)基因结构分析表明,植物EPSPS基因基本都含有8个外显子和7个内含子,且所对应外显子的长度相当,而内含子的长度差异很大,说明在植物基因组进化过程中造成EPSPS基因结构差异的主要因素是内含子的改变。研究结果将为揭示植物EPSPS蛋白的结构功能提供参考。  相似文献   

8.
SPL(SQUAMOSA promoter binding like)家族蛋白是植物特有的一类具有多功能的转录因子家族。在拟南芥中,SPL家族的11个基因受miR156的调控。该家族成员蛋白质都含有十分保守的SBP结构域,该结构域包含2个Zn2+结合位点和1个核定位信号序列。近年来,已从多种植物中分离出miR156及SPL基因。越来越多的研究表明,miR156及SPL家族参与了植物的生长发育、代谢调节及非生物胁迫等多种生物过程,成为植物生长发育的调控枢纽。本文综述了miR156及SPL家族在阶段转变、叶片发育、次生代谢及非生物胁迫等过程中的分子机制,并对其研究前景提出展望。  相似文献   

9.
春化低温处理可以使拟南芥等十字花科植物提前开花,该过程中涉及到一个重要的植物同源结构域指(PHD-finger)蛋白VERNALIZATION INSENSITIVE3(VIN3)。PHD-finger结构域是真核生物中一种进化保守的锌指结构域,通常参与蛋白质之间的相互作用,特别是对核小体组蛋白进行甲基化、乙酰化、磷酸化等修饰。在春化处理过程中,VIN3及其同源基因编码的蛋白都具有PHD-finger结构域,该结构域通过对开花抑制基因FLOWERING LOCUS C染色质组蛋白进行H3K9、H3K27甲基化、H3K9和H3K14去乙酰化等修饰,调节FLC染色质结构状态,使其从松弛状态转变为高度凝缩状态而关闭其功能,从而影响FLC转录活性进而促进开花。以下综述了拟南芥等十字花科植物春化作用途径中PHD-finger蛋白的功能,并且概述了春化作用机制。  相似文献   

10.
转录因子ZBTB家族是一类在N末端含有BTB结构域和在C末端含有多个锌指结构域的蛋白质。近年来,肿瘤基因组学的研究发现,编码该家族成员的多个基因在某些肿瘤中发生较高程度的突变、缺失或(和)扩增,这提示着ZBTB蛋白转录功能的紊乱可能与肿瘤的发生、发展相关。综述了ZBTB家族蛋白功能研究的最新进展,着重介绍了若干ZBTB蛋白与基因组稳定性的关系。  相似文献   

11.
CDPK-mediated abiotic stress signaling   总被引:2,自引:0,他引:2  
Calcium-dependent protein kinases (CDPKs) constitute a large multigene family in various plant species. CDPKs have been shown to have important roles in various physiological processes, including plant growth and development and abiotic and biotic stress responses in plants. Functional analysis using gain-of-function and loss-of-function mutants has revealed the biological function of CDPKs in planta. Several CDPKs have been shown to be essential factors in abiotic stress tolerance, positively or negatively regulating stress tolerance by modulating ABA signaling and reducing the accumulation of reactive oxygen species (ROS). This review summarizes recent results describing the biological function of CDPKs that are involved in abiotic stress tolerance.  相似文献   

12.
In nature, plants are constantly affected by adverse conditions. Unlike animals, plants can resist these adverse stresses only by insisting on their original positions. Stress can be divided into biological stress and abiotic stress, abiotic stress directly affects the growth, development and yield of plants, it spans all developmental stages from seed germination to senescence. In order to adapt to changing environment, plants have evolved well-developed mechanisms that help to perceive the stress signals and enable optimal growth response. Salicylic acid (SA) is an important endogenous signal molecule in plants, which not only regulate some plant growth and development processes, but also plays an important part in plant stress resistance. Much work about salicylic acid has been done on the immunity of plants to pathogens, and the synthesis and signal transduction of SA are clearly understood, its function in plant growth, development and abiotic stress is also well learned, we systemically summarized the multiple function of SA signal in non-pathogen-related response, such review should help us understand the common but essential function of SA signal in modulating plant growth, development and abiotic stress.  相似文献   

13.
植物蛋白激酶与作物非生物胁迫抗性的研究   总被引:3,自引:0,他引:3  
干旱、盐碱、高温等非生物逆境胁迫严重影响作物生长发育、产量和品质。在遭受非生物逆境的威胁时,植物通过信号受体,可感知、转导胁迫信号,启动一系列抗逆相关基因的表达,最终缓解或抵御非生物逆境胁迫对植物造成的危害。其中,蛋白激酶和蛋白磷酸酯酶的磷酸化/去磷酸化作用在植物感受外界胁迫信号的分子传递过程中起到开关的作用。正常情况下,蛋白激酶磷酸化开启信号转导途径,启动相应的抗逆基因表达反应;当信号消失后,蛋白激酶去磷酸化将信号转导途径关闭,达到调控植物正常生长的目的。因此,蛋白激酶在调控感受胁迫信号、启动各种非生物逆境胁迫响应中起到了极其重要的作用。近年来,对植物蛋白激酶参与非生物胁迫响应的研究倍受关注。本文阐述了不同类型蛋白激酶在改良作物非生物胁迫抗性上的应用,为进一步研究提供资料。  相似文献   

14.
Lipid signalling in plant responses to abiotic stress   总被引:2,自引:0,他引:2       下载免费PDF全文
Lipids are one of the major components of biological membranes including the plasma membrane, which is the interface between the cell and the environment. It has become clear that membrane lipids also serve as substrates for the generation of numerous signalling lipids such as phosphatidic acid, phosphoinositides, sphingolipids, lysophospholipids, oxylipins, N‐acylethanolamines, free fatty acids and others. The enzymatic production and metabolism of these signalling molecules are tightly regulated and can rapidly be activated upon abiotic stress signals. Abiotic stress like water deficit and temperature stress triggers lipid‐dependent signalling cascades, which control the expression of gene clusters and activate plant adaptation processes. Signalling lipids are able to recruit protein targets transiently to the membrane and thus affect conformation and activity of intracellular proteins and metabolites. In plants, knowledge is still scarce of lipid signalling targets and their physiological consequences. This review focuses on the generation of signalling lipids and their involvement in response to abiotic stress. We describe lipid‐binding proteins in the context of changing environmental conditions and compare different approaches to determine lipid–protein interactions, crucial for deciphering the signalling cascades.  相似文献   

15.
逆境相关植物锌指蛋白的研究进展   总被引:9,自引:0,他引:9  
锌是植物必需的营养元素,锌指蛋白因其具有指状结构特征且能结合Zn2 而得名,植物锌指蛋白包含特有的QALGGH保守结构,可能涉及调控植物特有的生物学功能。人们已经从拟南芥(Arabidopsis thaliana)、矮牵牛(Petunia hybrida Vilm)、水稻(Oryza sativa)、大豆(Glycine max)、棉花(Gossypium hirsutum)等植物中克隆了许多编码锌指蛋白的基因,并对其结构及功能进行了研究。利用转基因技术,将一些与逆境胁迫相关的锌指蛋白基因在目标植物中过量表达后,能对植物起到增强抗逆性的作用,说明锌指蛋白在增强植物逆境抗性方面有着广阔的应用前景。  相似文献   

16.
Programmed cell death (PCD) occurs in plants during development and defense, but the processes and mechanisms are not yet defined. Culture of carrot single cells at a cell density of <104 cells ml−1 activates a cell death process involving condensation and shrinkage of the cytoplasm and nucleus and fragmentation of the DNA. Modest abiotic stress treatments also cause cell condensation and shrinkage and the formation of DNA fragments, but the same abiotic stresses at high levels cause rapid necrosis with cell swelling and lysis. The common morphological features of cells dying at low cell density and following modest abiotic stress treatments suggest that these features reveal a PCD pathway in carrot. The addition of a cell-conditioned growth medium allows cells at low cell density to remain alive, demonstrating that cell-derived signal molecules suppress a pathway that is otherwise induced by default. Differences in the morphology of the dead cells suggest that proteolysis during PCD differs in detail in plants and animals; however, these findings show that plants, like animals, can control PCD by social signaling, and imply that the mechanism of PCD in plants and animals may be similar. Consistent with this, manipulation of signal pathway intermediates that regulate PCD in animals shows that Ca2+ and protein phosphorylation events are PCD pathway intermediates in carrot.  相似文献   

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Water transport across cellular membranes is regulated by a family of water channel proteins known as aquaporins (AQPs). As most abiotic stresses like suboptimal temperatures, drought or salinity result in cellular dehydration, it is imperative to study the cause–effect relationship between AQPs and the cellular consequences of abiotic stress stimuli. Although plant cells have a high isoform diversity of AQPs, the individual and integrated roles of individual AQPs in optimal and suboptimal physiological conditions remain unclear. Herein, we have identified a plasma membrane intrinsic protein gene (MusaPIP1;2) from banana and characterized it by overexpression in transgenic banana plants. Cellular localization assay performed using MusaPIP1;2::GFP fusion protein indicated that MusaPIP1;2 translocated to plasma membrane in transformed banana cells. Transgenic banana plants overexpressing MusaPIP1;2 constitutively displayed better abiotic stress survival characteristics. The transgenic lines had lower malondialdehyde levels, elevated proline and relative water content and higher photosynthetic efficiency as compared to equivalent controls under different abiotic stress conditions. Greenhouse‐maintained hardened transgenic plants showed faster recovery towards normal growth and development after cessation of abiotic stress stimuli, thereby underlining the importance of these plants in actual environmental conditions wherein the stress stimuli is often transient but severe. Further, transgenic plants where the overexpression of MusaPIP1;2 was made conditional by tagging it with a stress‐inducible native dehydrin promoter also showed similar stress tolerance characteristics in in vitro and in vivo assays. Plants developed in this study could potentially enable banana cultivation in areas where adverse environmental conditions hitherto preclude commercial banana cultivation.  相似文献   

20.
Abiotic stresses may result in significant losses in rice grain productivity. Protein regulation by the ubiquitin/proteasome system has been studied as a target mechanism to optimize adaptation and survival strategies of plants to different environmental stresses. This article aimed at highlighting recent discoveries about the roles ubiquitination may play in the exposure of rice plants to different abiotic stresses, enabling the development of modified plants tolerant to stress. Responses provided by the ubiquitination process include the regulation of the stomatal opening, phytohormones levels, protein stabilization, cell membrane integrity, meristematic cell maintenance, as well as the regulation of reactive oxygen species and heavy metals levels. It is noticeable that ubiquitination is a potential means for developing abiotic stress tolerant plants, being an excellent alternative to rice (and other cultures) improvement programs.  相似文献   

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