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Yingying Zhang Shuang Wang Lu Wang Xiaoyan Chang Yongxiao Fan Meiqing He Dawei Yan 《International journal of molecular sciences》2022,23(10)
Plasmodesmata (PD) are plant-specific channels connecting adjacent cells to mediate intercellular communication of molecules essential for plant development and defense. The typical PD are organized by the close apposition of the plasma membrane (PM), the desmotubule derived from the endoplasmic reticulum (ER), and spoke-like elements linking the two membranes. The plasmodesmal PM (PD-PM) is characterized by the formation of unique microdomains enriched with sphingolipids, sterols, and specific proteins, identified by lipidomics and proteomics. These components modulate PD to adapt to the dynamic changes of developmental processes and environmental stimuli. In this review, we focus on highlighting the functions of sphingolipid species in plasmodesmata, including membrane microdomain organization, architecture transformation, callose deposition and permeability control, and signaling regulation. We also briefly discuss the difference between sphingolipids and sterols, and we propose potential unresolved questions that are of help for further understanding the correspondence between plasmodesmal structure and function. 相似文献
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Florian Turbant Jehan Waeytens Camille Campidelli Marianne Bombled Denis Martinez Axelle Grlard Birgit Habenstein Vincent Raussens Marisela Velez Frank Wien Vronique Arluison 《International journal of molecular sciences》2022,23(15)
Hfq is a pleiotropic regulator that mediates several aspects of bacterial RNA metabolism. The protein notably regulates translation efficiency and RNA decay in Gram-negative bacteria, usually via its interaction with small regulatory RNAs. Previously, we showed that the Hfq C-terminal region forms an amyloid-like structure and that these fibrils interact with membranes. The immediate consequence of this interaction is a disruption of the membrane, but the effect on Hfq structure was unknown. To investigate details of the mechanism of interaction, the present work uses different in vitro biophysical approaches. We show that the Hfq C-terminal region influences membrane integrity and, conversely, that the membrane specifically affects the amyloid assembly. The reported effect of this bacterial master regulator on membrane integrity is discussed in light of the possible consequence on small regulatory RNA-based regulation. 相似文献
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膜生物反应器中污泥EPS的提取方法 总被引:3,自引:0,他引:3
采用七种方法(热、酸、碱处理等)提取MBR(Membrane Bioreactor)中污泥EPS(extracellular polymeric substances),研究了这些方法对于污泥EPS的最佳提取条件。在综合考虑各种方法的精确性、操作简易度、提取效果、对污泥细胞的破坏程度后,确定EDTA二钠提取(浓度2%,3h)和热提取(80℃,45min)是最简便有效的两种提取方法。NaOH提取(1mol.L-1,2h)对污泥细胞具有很大的破坏作用,投加甲醛(浓度2%,2h)之后提取核酸含量减少了21.5%,降低了NaOH溶液提取对于细胞的破坏作用。 相似文献
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在膜分离中,薄膜超薄化对促进气体传输至关重要,而将膜厚降至亚微米级则极具挑战性.本文中,我们提出表面胶转化法来合成亚微米厚度的纯硅MFI分子筛膜.通过精细调控前驱体化学组成制备了低浸润性的黏性胶,有效防止凝胶从氧化铝载体表面渗透至空隙中.在晶种的诱导下,辅以少量水蒸气,表面凝胶经历了直接和完全晶化过程,形成了厚度为~5... 相似文献
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The abuse or misuse of antibiotics has caused the emergence of extensively drug-resistant (XDR) bacteria, rendering most antibiotics ineffective and increasing the mortality rate of patients with bacteremia or sepsis. Antimicrobial peptides (AMPs) are proposed to overcome this problem; however, many AMPs have attenuated antimicrobial activities with hemolytic toxicity in blood. Recently, AMPR-11 and its optimized derivative, AMPR-22, were reported to be potential candidates for the treatment of sepsis with a broad spectrum of antimicrobial activity and low hemolytic toxicity. Here, we performed molecular dynamics (MD) simulations to clarify the mechanism of lower hemolytic toxicity and higher efficacy of AMPR-22 at an atomic level. We found four polar residues in AMPR-11 bound to a model mimicking the bacterial inner/outer membranes preferentially over eukaryotic plasma membrane. AMPR-22 whose polar residues were replaced by lysine showed a 2-fold enhanced binding affinity to the bacterial membrane by interacting with bacterial specific lipids (lipid A or cardiolipin) via hydrogen bonds. The MD simulations were confirmed experimentally in models that partially mimic bacteremia conditions in vitro and ex vivo. The present study demonstrates why AMPR-22 showed low hemolytic toxicity and this approach using an MD simulation would be helpful in the development of AMPs. 相似文献