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1.
根据禾谷镰孢菌参考菌株NRRL310 84 (PH 1)的α- 微管蛋白基因核苷酸序列设计 4对引物 ,采用PCR方法克隆并测序了禾谷镰孢菌 (Fusariumgraminearum)对多菌灵 (MBC)不同敏感性表型的 6个中国菌株的α 微管蛋白基因全序列。DNA序列对照表明中国的 3个敏感菌株和 3个抗药菌株的α- 微管蛋白基因核苷酸序列同源性没有差异 ,多菌灵抗药性与α- 微管蛋白无关。该基因全长 1718bp ,含有 6个内元 ,编码 4 4 9aa ;与NRRL310 84的α- 微管蛋白基因核苷酸序列同源性为 99% ,存在 5个差异核苷酸 ,与其所编码的氨基酸序列同源性为 99 78% ;与其他 6种真菌α- 微管蛋白基因所编码的氨基酸序列同源性为 37%~ 86 %。  相似文献   

2.
[目的]研究小麦赤霉病菌对多菌灵的抗药性与α2-微管蛋白基因的相关性.[方法]比较对多菌灵不同敏感性水平菌株间在药剂作用下的形态学特征及其α2-微管蛋白基因异同.[结果]当敏感菌株和田间中抗菌株均在各自EC50和EC90浓度作用下,两者分生孢子芽管和初生菌丝均表现畸形,肿胀,分支增多.根据小麦赤霉病菌核基因组测序菌株NRRL31 084(PH-1)的α2-微管蛋白基因核苷酸序列设计4对引物,采用PCR方法克隆并测定了小麦赤霉病菌(Fusarium graminearum)对多菌灵(MBC)不同敏感性表型的8个中国菌株的α2-微管蛋白基因全序列.DNA序列比对结果表明中国的4个敏感菌株和4个抗药性菌株的α2-微管蛋白基因核苷酸序列同源性没有差异,多菌灵抗药性与α2-微管蛋白无关.该基因全长1712 bp,含有4个内元,编码453 aa;与NRRL31 084的α2-微管蛋白基因核苷酸序列同源性为99%,存在5个差异核苷酸,与其所编码的氨基酸序列同源性为100%;与其他9种真菌α2-微管蛋白基因所编码的氨基酸序列同源性为64%~89%.[结论]小麦赤霉病菌对多菌灵的抗药性与α2-微管蛋白序列无关.  相似文献   

3.
目的:探讨α-微管蛋白基因与棉纤维发育的关系,为利用基因工程培育棉花新品种提供理论依据。方法:利用PCR与测序技术相结合的方法,对4个纤维品质差异较大、基因型不同的棉纤维α-微管蛋白基因进行序列分析。结果:4个品种均得到了1条约250bp的电泳谱带,对其测序发现品种之间存在不同程度的差异。结论:α-微管蛋白基因的保守性很强,只存在个别碱基的差异;α-微管蛋白基因参与调控棉纤维的形态建成,控制着纤维素的沉积方式,即对纤维伸长及次生壁增厚有重要作用。  相似文献   

4.
一、前言细胞骨架中主要结构组分之一是微管系统。现已知与组成微管有关的蛋白质有两大类:微管蛋白和微管伴随蛋白(MAPs),前者中包括α-微管蛋白和β-微管蛋白,其二聚体称为6s微管蛋白,而后者则包括高分子微管伴随蛋白(HMW)和分子量较小的tau蛋白,近年来对这些蛋白质的性质、提纯和其抗体的制备等研究都有相当大的进展。方法学上利用免疫荧光和免疫酶标促进了对细胞的微管系统及细胞骨架整体的了解。我们曾对组成微管的蛋白做过一些工作。本文报道我们在以前工作的  相似文献   

5.
微管蛋白(tubulin)是一蛋白质超家族,其中α-,β-微管蛋白是主要的微管蛋白,而γ-微管蛋白主要在微管组装中起作用. 我们利用蛋白质印迹和激光共聚焦技术研究了γ-微管蛋白在猪卵母细胞成熟、受精和活化中的分布. γ-微管蛋白存在于猪卵母细胞中,并且在减数分裂成熟各个时期的量保持不变. 它聚集在微管上,特别是中期纺锤体的两极和后末期的中板. 体外受精和孤雌活化后,γ-微管蛋白聚集在雌雄原核的周围.另外它也存在于精子的顶体帽和颈部.在早期卵裂中,γ-微管蛋白聚集在胚胎的细胞核周围.实验结果表明,γ-微管蛋白在猪卵母细胞、精子和胚胎的微管组装中起重要的调节作用,在猪受精过程中,精子和卵子都向受精卵贡献中心体物质.  相似文献   

6.
γ-微管蛋白在猪卵母细胞成熟和活化中的分布   总被引:1,自引:0,他引:1  
微管蛋白(tubulin)是一蛋白质超家族,其中α-,β-微管蛋白是主要的微管蛋白,而γ-微管蛋白主要在微管组装中起作用. 我们利用蛋白质印迹和激光共聚焦技术研究了γ-微管蛋白在猪卵母细胞成熟、受精和活化中的分布. γ-微管蛋白存在于猪卵母细胞中,并且在减数分裂成熟各个时期的量保持不变. 它聚集在微管上,特别是中期纺锤体的两极和后末期的中板. 体外受精和孤雌活化后,γ-微管蛋白聚集在雌雄原核的周围.另外它也存在于精子的顶体帽和颈部.在早期卵裂中,γ-微管蛋白聚集在胚胎的细胞核周围.实验结果表明,γ-微管蛋白在猪卵母细胞、精子和胚胎的微管组装中起重要的调节作用,在猪受精过程中,精子和卵子都向受精卵贡献中心体物质.  相似文献   

7.
玉米α-微管蛋白分子生物学研究进展   总被引:2,自引:0,他引:2  
自1963 年在植物细胞中发现微管以来,其研究取得了较大进展。α_ 微管蛋白是组成微管的基本单位之一。本文综述了玉米α_微管蛋白基因及其表达调控的研究进展  相似文献   

8.
运用蛋白质组学方法比较龙眼(Dimocarpus longan Lour.)正常成花和成花逆转花芽的差异蛋白质组,并应用RACE方法克隆其中上调表达的α-微管蛋白基因α-tubulin,获得一段长度为1641 bp的cDNA,其中包括1个1350 bp的开放阅读框[GenBank登录号: FJ479617(GI:218202929)]。将α-tubulin全长cDNA在大肠杆菌中表达,获得1个约49.6 kD的外源蛋白,经Western blotting验证为α-微管蛋白。RT-PCR和Western blotting分别检测了α-tubulin在转录和翻译水平上的表达, 结果表明,α-微管蛋白在成花逆转的龙眼花芽中上调表达,可能是逆转花芽形态差异表现的原因之一。  相似文献   

9.
小鼠孤雌胚早期发育过程中γ-微管蛋白的动态变化   总被引:1,自引:0,他引:1  
微管蛋白是构成微管的主要蛋白,其中α、β亚单位形成异二聚体,而γ-微管蛋白在微管组装中起作用。为了研究小鼠早期孤雌胚中廿微管蛋白的动态变化,本实验采用了免疫荧光化学染色与激光共聚焦显微镜观察相结合的方法,在SrCl2激活的卵母细胞减数分裂以及早期孤雌胚有丝分裂过程中对γ-微管蛋白进行了定位观察。结果显示,SrCl2和细胞松弛素B(cytochalasin B,CB)诱导的第二次减数分裂中期(metaphase Ⅱ ofmeiosis,MII)小鼠卵母细胞恢复减数分裂,并且纺锤体始终与质膜平行,表明纺锤体旋转被抑制,但核分裂不受影响。减数分裂过程中γ-微管蛋白主要定位于中期纺锤体两极和后期分开的染色单体之间;孤雌活化两雌原核形成以后,γ-微管蛋白聚集在两雌原核周围。在早期孤雌胚有丝分裂间期无定形的γ-微管蛋白均匀分布于核;前中期γ-微管蛋白向两极移动,遍布于整个纺锤体区。有丝分裂中期、后期和末期廿微管蛋白的分布变化与减数分裂相似。结果表明,SrCl2和CB激活的MII卯母细胞产生杂合二倍体;γ-微管蛋白具有促微管负极帽形成和稳定微管的功能,从而促进纺锤体的形成;分裂后期和末期廿微管蛋白的重新分布可能是由纺锤体牵引同源染色体分离所诱导的:γ-微管蛋白负责两雌原核的迁移靠近。  相似文献   

10.
微管是真核细胞构成细胞骨架的主要成分,由α/β微管蛋白组装而成。微管在细胞多种活动中发挥着重要的作用,其功能主要受微管结合蛋白、微管蛋白的翻译后修饰以及微管蛋白亚型的调控。已有研究发现,α/β微管蛋白存在多种亚型,微管蛋白亚型在不同组织以及发育过程中的表达模式差异较大。多种微管蛋白亚型基因的突变可以引起神经系统疾病。该文综述了微管蛋白亚型的研究进展,尤其在微管功能调控、神经系统发育及其相关疾病中的作用。  相似文献   

11.
Current models of microtubule assembly from pure tubulin involve a nucleation phase followed by microtubule elongation at a constant polymer number. Both the rate of microtubule nucleation and elongation are thought to be tightly influenced by the free GTP-tubulin concentration, in a law of mass action-dependent manner. However, these basic hypotheses have remained largely untested due to a lack of data reporting actual measurements of the microtubule length and number concentration during microtubule assembly.Here, we performed simultaneous measurements of the polymeric tubulin concentration, of the free GTP-tubulin concentration, and of the microtubule length and number concentration in both polymerizing and depolymerizing conditions. In agreement with previous work we find that the microtubule nucleation rate is strongly dependent on the initial GTP-tubulin concentration. But we find that microtubule nucleation persists during microtubule elongation. At any given initial tubulin-GTP concentration, the microtubule nucleation rate remains constant during polymer assembly, despite the wide variation in free GTP-tubulin concentration. We also find a remarkable constancy of the rate of microtubule elongation during assembly. Apparently, the rate of microtubule elongation is intrinsic to the polymers, insensitive to large variations of the free GTP-tubulin concentration. Finally we observe that when, following assembly, microtubules depolymerize below the free GTP-tubulin critical concentration, the rate-limiting factor for disassembly is the frequency of microtubule catastrophe. At all time-points during disassembly, the microtubule catastrophe frequency is independent of the free GTP-tubulin concentration but, as the microtubule nucleation rate, is strongly dependent on the initial free GTP-tubulin concentration. We conclude that the dynamics of both microtubule assembly and disassembly depend largely on factors other than the free GTP-tubulin concentration. We propose that intrinsic structural factors and endogenous regulators, whose concentration varies with the initial conditions, are also major determinants of these dynamics.  相似文献   

12.
EB1 targets to polymerizing microtubule ends, where it is favorably positioned to regulate microtubule polymerization and confer molecular recognition of the microtubule end. In this study, we focus on two aspects of the EB1-microtubule interaction: regulation of microtubule dynamics by EB1 and the mechanism of EB1 association with microtubules. Immunodepletion of EB1 from cytostatic factor-arrested M-phase Xenopus egg extracts dramatically reduced microtubule length; this was complemented by readdition of EB1. By time-lapse microscopy, EB1 increased the frequency of microtubule rescues and decreased catastrophes, resulting in increased polymerization and decreased depolymerization and pausing. Imaging of EB1 fluorescence revealed a novel structure: filamentous extensions on microtubule plus ends that appeared during microtubule pauses; loss of these extensions correlated with the abrupt onset of polymerization. Fluorescent EB1 localized to comets at the polymerizing plus ends of microtubules in cytostatic factor extracts and uniformly along the lengths of microtubules in interphase extracts. The temporal decay of EB1 fluorescence from polymerizing microtubule plus ends predicted a dissociation half-life of seconds. Fluorescence recovery after photobleaching also revealed dissociation and rebinding of EB1 to the microtubule wall with a similar half-life. EB1 targeting to microtubules is thus described by a combination of higher affinity binding to polymerizing ends and lower affinity binding along the wall, with continuous dissociation. The latter is likely to be attenuated in interphase. The highly conserved effect of EB1 on microtubule dynamics suggests it belongs to a core set of regulatory factors conserved in higher organisms, and the complex pattern of EB1 targeting to microtubules could be exploited by the cell for coordinating microtubule behaviors.  相似文献   

13.
The transition from interphase to mitosis is marked by a dramatic change in microtubule dynamics resulting in the reorganization of the microtubule network that culminates in mitotic spindle formation. While the molecular basis for this change in microtubule organization remains obscure, it is currently thought that a balance in the activity of microtubule stabilizing and destabilizing factors regulates how dynamic cellular microtubules are. By mixing the microtubule stabilizer XMAP215 and the microtubule destabilizer XKCM1, reconstitution of in vivo-like microtubule dynamics has now been achieved in vitro.  相似文献   

14.
Regulation of microtubule nucleation sites is an essential step in microtubule organization. Cortical microtubule arrays in green plant cells at inter-phase are organized in a distinct manner—the array is formed in the absence of previously recognized organelles for microtubule nucleation, for example the centrosome and spindle pole body. Microtubules in the cortical array were recently found to be nucleated as branches on pre-existing microtubules via recruitment of cytosolic γ-tubulin. In this review we briefly summarize the mechanism of microtubule-dependent microtubule nucleation and discuss a possible role of this mechanism in other cellular processes and their evolution.  相似文献   

15.
A method is described which permits the preparation of descrete classes of oocytes of different sizes from all stages of oogenesis in Xenopus laevis. This technique is used in the determination of the content of microtubule protein in oocytes during the course of oogenesis. These experiments show that microtubule protein is present in oocytes of all sizes assayed and that the amount is simply related to the volume of the oocyte. In the largest oocytes microtubule protein constitutes 1% of the soluble protein and this amount does not change on maturation and fertilization. These results show that the changes occurring in the oocyte on maturation which allow the cytoplasm to support microtubule polymerization occur as a result of a modification of the pre-existing microtubule protein, not from protein synthesis de novo. These experiments also indicate that the synthesis of microtubule protein either form 'masked' mRNA or from newly synthesized mRNA plays an insignificant role in microtubule protein synthesis at maturation, ovulation and immediately post-fertilization.  相似文献   

16.
We present two new computational models of microtubule dynamics in the neuronal growth cone. These extend previous models of microtubule dynamics, which have neglected the effect of microtubule interactions with one another and with F-actin in the growth cone. Ultimately, these interactions determine whether the nerve cell makes the right target connections. In the first model, analysis of the effect of microtubule bundling on axonal elongation shows that small interaction effects between individual microtubules can be amplified within the microtubule bundle to significantly alter the rate of axonal growth. The second model concerns the effect of interactions between microtubules and F-actin on growth-cone turning. The model simulates microtubule invasion into the growth cone after contact with a target cell. Results suggest that microtubules do not randomly invade the growth cone, which supports the recent view that microtubules play a more active role in pathfinding than previously expected. Our results indicate that microtubule interactions with F-actin and with other microtubules play a fundamental role in axonal elongation and growth-cone turning.  相似文献   

17.
The formation of a functional bipolar mitotic spindle is essential for genetic integrity. In human cells, the microtubule polymerase XMAP215/ch-Tog ensures spindle bipolarity by counteracting the activity of the microtubule-depolymerizing kinesin XKCM1/MCAK. Their antagonistic effects on microtubule polymerization confer dynamic instability on microtubules assembled in cell-free systems. It is, however, unclear if a similar interplay governs microtubule behavior in mammalian cells in vivo. Using real-time analysis of spindle assembly, we found that ch-Tog is required to produce or maintain long centrosomal microtubules after nuclear-envelope breakdown. In the absence of ch-Tog, microtubule assembly at centrosomes was impaired and microtubules were nondynamic. Interkinetochore distances and the lengths of kinetochore fibers were also reduced in these cells. Codepleting MCAK with ch-Tog improved kinetochore fiber length and interkinetochore separation but, surprisingly, did not rescue centrosomal microtubule assembly and microtubule dynamics. Our data therefore suggest that ch-Tog has at least two distinct roles in spindle formation. First, it protects kinetochore microtubules from depolymerization by MCAK. Second, ch-Tog plays an essential role in centrosomal microtubule assembly, a function independent of MCAK activity. Thus, the notion that the antagonistic activities of MCAK and ch-Tog determine overall microtubule stability is too simplistic to apply to human cells.  相似文献   

18.
Addition of increasing amounts of zinc to a cold microtubule protein solution results in the disappearance of 30 S oligomer found in the absence of that cation and in the appearance of new tubulin oligomers, 90 S and 23 S. When a microtubule protein solution is warmed in the presence of zinc, tubulin-sheets are assembled. We have tested the influence of microtubule associated proteins and the zinc:tubulin ratio on the polymerization process. Depletion of microtubule associated proteins results in wider and longer tubulin-sheets than those polymerized in the presence of microtubule associated proteins. However by increasing zinc concentration wider but shorter tubulin-sheets were found. These results suggest that microtubule associated proteins and zinc could promote nucleation of tubulin-sheets, but zinc also promotes lateral tubulin-tubulin interaction. This interpretation was confirmed when microtubule protein was assembled at a low zinctubulin ratio. In such conditions composite structures of microtubules and zinc tubulin-sheets arc formed. These composite structures are consequence of a lateral attachment of a zinc tubulin-sheet on a microtubule protofilament.  相似文献   

19.
Nucleotide binding and phosphorylation in microtubule assembly in vitro.   总被引:4,自引:0,他引:4  
Two non-hydrolyzable analogs of GTP, guanylyl-β,γ-methylene diphosphonate and guanylyl imidodiphosphate, have been found to induce rapid and efficient microtubule assembly in vitro by binding at the exchangeable site (E-site) on tubulin. Characterization of microtubule polymerization by several criteria, including polymerization kinetics, nucleotide binding to depolymerized and polymerized microtubules, and microtubule stability, reveals strong similarities between microtubule assembly induced by GTP and non-hydrolyzable GTP analogs. Nucleoside triphosphates which bind weakly or not at all to tubulin, such as ATP, UTP and CTP, are shown to induce microtubule assembly by means of a nucleoside diphosphate kinase (NDP-kinase, EC 2.7.4.6.) activity which is not intrinsic to tubulin. The NDP-kinase mediates microtubule polymerization by phosphorylating tubulin-bound GDP in situ at the E-site. Although hydrolysis of exchangeably bound GTP occurs, it is found to be uncoupled from the polymerization reaction. The non-exchangeable nucleotide binding site on tubulin (N-site) is not directly involved in microtubule assembly in vitro. The N-site is shown to contain almost exclusively GTP which is not hydrolyzed during microtubule assembly. A scheme is presented in which GTP acts as an allosteric effector at the E-site during microtubule assembly in vitro.  相似文献   

20.
Nocodazole-Resistant Mutants in Paramecium   总被引:1,自引:0,他引:1  
The effect of the microtubule inhibitor nocodazole was studied on Paramecium and shown to arrest cell multiplication, depolymerize the internal microtubule network, and block the development of macro- and micronuclear spindles and of the cytospindle (a cortical microtubule array assembled during division). After ultraviolet mutagenesis, three mutants resistant to nocodazole, that is capable of continued growth in the presence of the drug, were isolated and shown to correspond to three nonallelic single-gene nuclear mutations. One ( noc r- 1 ) is semidominant while the other two ( noc r- 2 and noc r- 3 ) are recessive. Cytological and physiological studies of nocodazole's effects on the mutants demonstrate that their resistance is due neither to a lack of drug penetration nor to its degradation since, in each mutant in the presence of the drug, some microtubule networks are normal or subnormal while others remain affected as in wild-type cells. These are the first mutants resistant to microtubule depolymerizing drugs obtained in ciliates that provide a new tool for studying the assembly and dynamics of the diverse microtubule arrays in this type of organism.  相似文献   

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