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1.
心脏压力负荷导致心肌肥厚的过程是心衰发生的关键环节。已有研究表明,控制心脏收缩的细胞钙致钙释放过程在心肌肥厚及心衰状态下发生缺损,但分子机制尚未阐明。我们以主动脉结扎手术建立压力负荷的大鼠心肌肥厚模型:实验组分为假手术组、代偿性肥厚组(CHT)和失代偿性肥厚组(DHT),以松钳一共聚焦成像技术研究单个L-型钙通道(LCC)与ryanodine受体(RyR)间的钙信号耦联。我们发现DHT中LCC—RyR分子耦联潜伏期延长49%,耦联成功率降低47%,失败概率提高72%,证明DHT进入了一种“分子间衰退”状态。出人意料的是,心功能正常的CHT也发生分子间衰退,并与锚定肌质网与细胞膜的junctophilin蛋白表达下降有关,表明分子间耦联衰退在细胞功能变化显现之前已经潜性地发生。与此一致,细胞兴奋期钙释放同步性降低,但钙释放总量和细胞钙瞬变在CHT并无变化。这些结果提示,在一个我们称为“稳定余量”(stability margin)的范围内,分子间耦联衰退不会影响细胞兴奋收缩耦联能力,只有分子间耦联衰退超出稳定余量,心衰才会发生。潜性的分子间耦联衰退的发现对早期防治心衰有重要意义。  相似文献   

2.
在骨胳肌兴奋-收缩耦联过程中,肌浆钙离子浓度主要由肌浆网系调节。青蛙心肌细胞的肌浆网系不发达,没有横管,且细胞直径很小,因此肌浆钙离子浓度很可能由发生在肌膜上的过程调节。本文从定量角度验证这一设想的可能性。假定青蛙心肌细胞兴奋时钙离子顺浓度差从细胞外跨膜扩散入细胞使肌浆钙浓度升高,又经肌膜上类似载体作用的主动过程将钙离子排出细胞,由此计算静息蛙心肌在某一频率的重复刺激下肌浆钙离子浓度随刺激次数的变化以及对不同刺激频率当收缩张力达稳态时肌浆内钙浓度值。利用肌肉稳态收缩张力和细胞内钙离子浓度之间已知的单值关系可以看到,计算结果同实验记录的蛙心肌稳态张力与刺激频率间的“阶梯”关系符合得很好,说明青蛙心肌细胞膜在调节肌浆钙离子浓度中起决定作用这一想法从定量角度考虑也完全是可能的.  相似文献   

3.
吴昊迪  王世强  孟旭  张海波 《生命科学》2011,(11):1088-1094
心脏的收缩功能依赖心肌细胞膜(包括横管)与肌质网的结构耦联以及其中L型钙通道与肌质网钙释放通道之间的钙致钙释放过程。在一些病理条件下,细胞膜与肌质网的耦联结构发生重塑,钙致钙释放机制受损,心肌细胞收缩力下降。其中,junctophilin-2等蛋白分子表达量减少是心力衰竭疾病中心肌细胞收缩能力下降的关键因素。  相似文献   

4.
联系以膜电位变化为特征的细胞兴奋和以肌丝滑行为基础的肌肉收缩的中介过程通常称为兴奋收缩耦联。在所有参与调控心肌收缩功能的离子中,钙离子被认为是最重要的介导因子,因此验明钙离子参与介导心肌兴奋收缩耦联的方式和途径等特征无疑有益于更好地理解心脏的生理功能。  相似文献   

5.
联系以膜电位变化为特征的细胞兴奋和以肌丝滑行为基础的肌肉收缩的中介过程通常称为兴奋收缩耦联。在所有参与调控心肌收缩功能的离子中,钙离子被认为是最重要的介导因子,因此验明钙离子参与介导心肌兴奋收缩耦联的方式和途径等特征无疑有益于更好地理解心脏的生理功能。  相似文献   

6.
平滑肌收缩原理   总被引:3,自引:0,他引:3  
平滑肌收缩原理较心肌、骨骼肌复杂。本文比较了平滑肌与心肌、骨骼肌的超微结构和收缩蛋白的特征,这些特征决定了平滑肌收缩的特性。平滑肌收缩的分子机制有依赖 Ca~( )-肌纤凝蛋白系统-粗、细肌丝的滑行收缩,也有不依赖Ca~( )-肌纤凝蛋白系统、不消耗能量的被动系统。平滑肌张力与膜的通透性相偶联。平滑肌的张力决定于肌浆内 Ca~( )的浓度水平。肌膜上有两类 Ca~( )通道,电位敏感 Ca~( )通道和受体活化 Ca~( )通道。递质、激素和药物等都是通过改变肌膜上这两类通道,升高[Ca~( )]_i 的水平,使平滑肌产生张力,并在此基础上产生各种位相性收缩。  相似文献   

7.
肌细胞兴奋时,动作电位通过电压门控钙通道激活肌质网钙释放,由此引发的细胞内钙离子的瞬时升高驱动细胞收缩,这个过程叫做兴奋收缩耦联.21世纪以来,随着钙成像技术和分子细胞生物学技术的联合应用,心肌兴奋收缩耦联的分子机制逐步阐明.本文结合本实验室的相关研究,系统总结该领域的前沿进展,包括钙释放通道的分子性质、电压门控钙通道激活肌质网钙释放通道的动力学过程、生理调控以及病理变化.  相似文献   

8.
钠钙交换体(sodium calcium exchanger,NCX)是一种广泛分布于膜性结构(细胞质膜、线粒体膜、内质网、分泌小泡膜等)上的阳离子转运蛋白,具有两种转运Ca2+和Na+的模式:介导Na+内流、Ca2+外排的前向模式(forward mode)和作用相反的反向模式(reverse mode)。通过这种双向模式,NCX可以对胞质内Ca2+浓度进行快速精确的调节,继而影响细胞内信号转导、细胞生长发育、可兴奋细胞的兴奋及兴奋耦联的相关功能等一系列生理活动,如心肌和骨骼肌细胞的收缩、神经递质的释放、神经胶质细胞的迁移分化、免疫细胞的活化以及细胞因子与激素的分泌等。此外,在病理情况下,NCX反向模式的异常激活,被认为是NCX参与心血管系统、中枢神经系统、内分泌系统等多个系统病理生理过程的关键。在此,本文对NCX分子及其参与的生理、病理生理过程的研究进展作一综述,以提供关于NCX较为全面的认识。  相似文献   

9.
Yu ZB  Gao F 《中国应用生理学杂志》2005,21(4):449-452,i0011
目的:探讨萎缩骨骼肌单位面积上等长收缩最大张力(Pt)降低的机理.方法:采用肌球蛋白ATP酶抑制剂BDM(Butanedione monoxime)灌流,观测其对离体骨骼肌肌条等长收缩功能的影响.结果:研究表明,BDM可使比目鱼肌(SOL)与趾长伸肌(EDL)等长收缩Pt明显降低,BDM对骨骼肌收缩功能的抑制呈剂量依赖性关系,且完全可逆.低浓度BDM(1 mmol/L)仅降低骨骼肌等长收缩的Pt而不影响其收缩时程,高浓度(10 mmol/L)下使收缩时程明显缩短.与SOL相比,在10mmol/LBDM作用下,使EDL等长收缩Pt降低一半的时间明显加快.无论在低浓度还是高浓度下,BDM对EDL肌球蛋白ATP酶活性的抑制作用均大于SOL.在相同浓度下,BDM对Pt的抑制程度远远大于对肌球蛋白ATP酶活性的抑制.结论:这些结果提示骨骼肌横桥功能降低可能是其等长收缩pt下降的原因之一;BDM并非特异型肌球蛋白ATP酶抑制剂,可对兴奋-收缩偶联的多个环节产生影响.  相似文献   

10.
横小管膜去极化如何导致肌浆网系释放Ca^2+?这是骨骼兴奋收缩耦联机制研究要回答的核心问题。肌醇磷脂使系统可能调控这一过程。本文通过分析现有的资料,并结合本实验室近期的工作,阐述了肌醇磷脂信使系统调控骨骼肌兴奋收缩耦联的证据,并且对该假说进行了讨论。  相似文献   

11.
红细胞膜蛋白与膜骨架   总被引:3,自引:0,他引:3  
近10多年红细胞膜领域的研究取得了可观的进展,在红细胞膜蛋白的结构-功能相关和相互作用以及红细胞膜障碍多方面都有新的发现和开拓.现主要就国内外有关报道作一扼要综述,涉及红细胞膜蛋白的组成、功能及其相互作用,红细胞膜骨架和红细胞膜蛋白疾病等研究进展.  相似文献   

12.
Adsorption of proteins onto membranes can alter the local membrane curvature. This phenomenon has been observed in biological processes such as endocytosis, tubulation, and vesiculation. However, it is not clear how the local surface properties of the membrane, such as membrane tension, change in response to protein adsorption. In this article, we show that the partial differential equations arising from classical elastic model of lipid membranes, which account for simultaneous changes in shape and membrane tension due to protein adsorption in a local region, cannot be solved for nonaxisymmetric geometries using straightforward numerical techniques; instead, a viscous-elastic formulation is necessary to fully describe the system. Therefore, we develop a viscous-elastic model for inhomogeneous membranes of the Helfrich type. Using the newly available viscous-elastic model, we find that the lipids flow to accommodate changes in membrane curvature during protein adsorption. We show that, at the end of protein adsorption process, the system sustains a residual local tension to balance the difference between the actual mean curvature and the imposed spontaneous curvature. We also show that this change in membrane tension can have a functional impact such as altered response to pulling forces in the presence of proteins.  相似文献   

13.
Adsorption of proteins onto membranes can alter the local membrane curvature. This phenomenon has been observed in biological processes such as endocytosis, tubulation, and vesiculation. However, it is not clear how the local surface properties of the membrane, such as membrane tension, change in response to protein adsorption. In this article, we show that the partial differential equations arising from classical elastic model of lipid membranes, which account for simultaneous changes in shape and membrane tension due to protein adsorption in a local region, cannot be solved for nonaxisymmetric geometries using straightforward numerical techniques; instead, a viscous-elastic formulation is necessary to fully describe the system. Therefore, we develop a viscous-elastic model for inhomogeneous membranes of the Helfrich type. Using the newly available viscous-elastic model, we find that the lipids flow to accommodate changes in membrane curvature during protein adsorption. We show that, at the end of protein adsorption process, the system sustains a residual local tension to balance the difference between the actual mean curvature and the imposed spontaneous curvature. We also show that this change in membrane tension can have a functional impact such as altered response to pulling forces in the presence of proteins.  相似文献   

14.
In cell mechanics, distinguishing the respective roles of the plasma membrane and of the cytoskeleton is a challenge. The difference in the behavior of cellular and pure lipid membranes is usually attributed to the presence of the cytoskeleton as explored by membrane nanotube extrusion. Here we revisit this prevalent picture by unveiling unexpected force responses of plasma membrane spheres devoid of cytoskeleton and synthetic liposomes. We show that a tiny variation in the content of synthetic membranes does not affect their static mechanical properties, but is enough to reproduce the dynamic behavior of their cellular counterparts. This effect is attributed to an amplified intramembrane friction. Reconstituted actin cortices inside liposomes induce an additional, but not dominant, contribution to the effective membrane friction. Our work underlines the necessity of a careful consideration of the role of membrane proteins on cell membrane rheology in addition to the role of the cytoskeleton.  相似文献   

15.
16.
Prestin is the membrane protein in outer hair cells that harnesses electrical energy by changing its membrane area in response to changes in the membrane potential. To examine the effect of membrane thickness on this protein, phosphatidylcholine (PC) with various acyl-chain lengths were incorporated into the plasma membrane by using γ-cyclodextrin. Incorporation of short chain PCs increased the linear capacitance and positively shifted the voltage dependence of prestin, up to 120 mV, in cultured cells. PCs with long acyl chains had the opposite effects. Because the linear capacitance is inversely related to the membrane thickness, these voltage shifts are attributable to membrane thickness. The corresponding voltage shifts of electromotility were observed in outer hair cells. These results demonstrate that electromotility is extremely sensitive to the thickness of the plasma membrane, presumably involving hydrophobic mismatch. These observations indicate that the extended state of the motor molecule, which is associated with the elongation of outer hair cells, has a conformation with a shorter hydrophobic height in the lipid bilayer.  相似文献   

17.
18.
Membrane tubulin   总被引:5,自引:0,他引:5  
Tubulin has been identified as a membrane component of nerve synaptosomes and myelin, plasma membranes of platelets, thyroid, and tissue culture cells, brain and liver coated vesicles, mitochondria, and in cilia but not flagella of certain molluscs. Membrane tubulin can differ from cytoplasmic forms in isoelectric point, non-polar amino acid substitutions, lack of carboxy-terminal tyrosine, carbohydrate content, and selective ability to reassociate with lipids. This tubulin may function as an attachment site for binding vesicles or plasma membranes to cytoplasmic microtubules, as a source of precursor tubulin at the growing tips of axonemes, or as a component of signal transduction in sensory cilia.  相似文献   

19.
Membrane transport   总被引:31,自引:0,他引:31  
  相似文献   

20.
The literary data on the problem of the membrane biogenesis are generalized. The mechanisms of formation, possible ways of metabolism of biomembrane structure in cells and the ways of their degradation are considered. A conclusion has been made on the existence in the cells several types of movement as for the separate components and membrane fragments as well.  相似文献   

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