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41.
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介绍了包边的定义、原理及包边模的基本结构,并详述了包边模设计方法及注意事项,为包边模设计提供了依据及指导。 相似文献
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Tobias Rosenkranz Alexandros Katranidis Diaa Atta Ingo Gregor Dr. Jörg Enderlein Prof. Mariusz Grzelakowski Dr. Per Rigler Dr. Wolfgang Meier Prof. Jörg Fitter Dr. 《Chembiochem : a European journal of chemical biology》2009,10(4):702-709
Protein unfolding inside immobilized polymerosomes : One of the most interesting properties of polymeric vesicles is their remarkable stability against extreme temperatures and osmotic stress, and their longevity even under harsh environmental conditions. We have demonstrated, in an application on protein folding, that surface‐tethered polymerosomes are suitable for performing time‐resolved single molecule studies with encapsulated proteins, as illustrated here.
44.
High group mobility protein, HMGA1a, was found to play a chaperone-like role in the folding or unfolding of hybrid polymers that contained well-defined synthetic chromophores and DNA sequences. The synthetic and biological hybrid polymers folded into hydrophobic chromophoric nanostructures in water, but existed as partially unfolded configurations in pH or salt buffers. The presence of HMGA1a induced unfolding of the hybrid DNA-chromophore polymer in pure water, whereas the protein promoted refolding of the same polymer in various pH or salt buffers. The origin of the chaperone-like properties probably comes from the ability of HMGA1a to reversibly bind both synthetic chromophores and single stranded DNA. The unfolding mechanisms and the binding stoichiometry of protein-hybrid polymers depended on the sequence of the synthetic polymers. 相似文献
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针对现有的折边封装技术对锂离子动力电池折边封装的弊端,设计一种成本低、性能稳定、自动化程度高的自动折叠封装折边机,并详细介绍了其结构、工作原理及工作过程。 相似文献
47.
Aikaterini Kefala Maria Amprazi Efstratios Mylonas Dina Kotsifaki Mary Providaki Charalambos Pozidis Melina Fotiadou Michael Kokkinidis 《International journal of molecular sciences》2021,22(4)
Recurrent protein folding motifs include various types of helical bundles formed by α-helices that supercoil around each other. While specific patterns of amino acid residues (heptad repeats) characterize the highly versatile folding motif of four-α-helical bundles, the significance of the polypeptide chain directionality is not sufficiently understood, although it determines sequence patterns, helical dipoles, and other parameters for the folding and oligomerization processes of bundles. To investigate directionality aspects in sequence-structure relationships, we reversed the amino acid sequences of two well-characterized, highly regular four-α-helical bundle proteins and studied the folding, oligomerization, and structural properties of the retro-proteins, using Circular Dichroism Spectroscopy (CD), Size Exclusion Chromatography combined with Multi-Angle Laser Light Scattering (SEC-MALS), and Small Angle X-ray Scattering (SAXS). The comparison of the parent proteins with their retro-counterparts reveals that while the α-helical character of the parents is affected to varying degrees by sequence reversal, the folding states, oligomerization propensities, structural stabilities, and shapes of the new molecules strongly depend on the characteristics of the heptad repeat patterns. The highest similarities between parent and retro-proteins are associated with the presence of uninterrupted heptad patterns in helical bundles sequences. 相似文献
48.
变质核杂岩体是区域性伸展构造的主要类型之一。安徽怀宁即是这种构造在大陆板块内部发育并得到保存的典型地区。通过区域大比例尺构造解析认为:怀宁古变质核杂岩体自下而上由变质核、基底剥离断层、褶叠层及盖层4个部分组成。其经历了2次伸展体制及2次收缩体制的构造叠加,形成了一个多期复合变形变质的古变质核杂岩体。 相似文献
49.
Joanna Skrzyde Dorota Borowska-Wykrt Dorota Kwiatkowska 《International journal of molecular sciences》2021,22(8)
This review is devoted to the structure, assembly and function of cuticle. The topics are discussed from the mechanical perspective and whenever the data are available a special attention is paid to the cuticle of perianth organs, i.e., sepals, petals or tepals. The cuticle covering these organs is special in both its structure and function and some of these peculiarities are related to the cuticle mechanics. In particular, strengthening of the perianth surface is often provided by a folded cuticle that functionally resembles profiled plates, while on the surface of the petal epidermis of some plants, the cuticle is the only integral continuous layer. The perianth cuticle is distinguished also by those aspects of its mechanics and development that need further studies. In particular, more investigations are needed to explain the formation and maintenance of cuticle folding, which is typical for the perianth epidermis, and also to elucidate the mechanical properties and behavior of the perianth cuticle in situ. Gaps in our knowledge are partly due to technical problems caused by very small thicknesses of the perianth cuticle but modern tools may help to overcome these obstacles. 相似文献