181 resultados para C-2

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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爆轰驱动过程中产生的高温高压气流对铝质膜片、激波管壁产生烧蚀和冲刷作用,以致激波管壁、端盖上附有氧化铝等杂质,而高温下AlO自由基在气体分子的高速碰撞下被激发并产生强烈的辐射,从而干扰了高温气体辐射光谱的分析。用爆轰驱动加热技术将空气加热到4 000~7 000 K,利用多通道光学分析仪对AlO自由基辐射光谱进行分析,实验发现在460~530 nm波长范围内有多支辐射非常强烈的AlO自由基B2Σ+-X2Σ+(T00=20 689 cm-1)带系辐射谱带,且每支谱带都由多个带头组成,带头间隔约为2 nm,带头处于高频位置并向低频方向伸延。通过实验与理论计算相结合,重点分析了AlO自由基B2Σ+-X2Σ+带系辐射光谱的结构特征。AlO自由基C2Πr-X2Σ+(T00=33 047 cm-1)带系辐射光谱处于270~335 nm波长范围内,其辐射强度相对于B2Σ+-X2Σ+带系较弱,并且与OH基A2Σ+-X2Π(T00=32 682 cm-1)带系辐射光谱互相干扰而难以分辨,对该波段高温空气的辐射光谱分析产生不利的影响。

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由于2酮L古龙酸还原酶(简称KGR)的存在,理论上造成了Vc合成前体2酮L古龙酸(简称2KLG)部分被还原成L艾杜糖酸[1,2],影响了Vc二步发酵的产率。而从L山梨糖到2酮L古龙酸的转化中,除被KGR催化的还原负反应外,均属...

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C-2 and LaC2+ were studied using Hartree-Fock(HF), B3LYP (Becke 3-paremeter-Lee-Yang-Parr) density functional method, second-order Moller-Plesset perturbation (MP2) and coupled cluster singles and doubles with non-iterative triples(CCSD(T)) methods. The basis set employed was LANL1DZ. Geometries, vibrational frequencies and other quantities were reported. The results showed that for C-2, all the methods performed well for low spin state (singlet), while only HF and B3LYP remained so for high spin state (triplet). For LaC2+, four isomers were presented and fully optimized. The results suggested that linear isomers with C-infinity v and D-infinity h symmetries were predicted to be saddle points on the energy surface for all the methods, while for isomers with C-2 upsilon and C-s symmetries, they were local minima except C-2 upsilon at B3LYP level, and were isoenergetic at HF, MP2 and CCSD(T) levels, near isoenergetic at B3LYP level. From the differences between HOMO and LUMO, it is also known that the isomers with C-2 upsilon and C-s symmetries offer the largest values and therefore correspond to the most stable structure. For La-C bond lengths, B3LYP gives the shortest, the order is B3LYP

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Based on the complex crystal chemical bond theory, the formula of Liu and Cohen's, which is only suitable for one type of bond, has been extended to calculate the bulk modulus of ternary chalcopyrite A(I)B(III)C(2)(VI) and A(II)B(IV)C(2)(V) which contains two types of bonds. The calculated results are in fair agreement with the previous theoretical values reported and experimental values. (C) 1998 Elsevier Science Ltd. All rights reserved.

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Reaction of YbCl3 with 3 equimolar CpNa (Cp = cyclopentadienide) in THF, followed by treatment with trans-(+/-)-N,N'-bis(salicylidene)-1,2-cyclohexanediamine led to the isolation of first mono(cyclopentadienyl) lanthanide Schiff base complex, [(eta(5)-C5H5)Yb(mu-OC20H20N2O)](2) (mu-THF)(THF) (1). The molecular structure of 1 shows that it is a dimer in which the two [(eta(5)-C5H5)Yb(mu-OC20H20N2O)] units connecting via a bridging THF oxygen and two bridging oxygen atoms from Schiff base ligands. (C) 1998 Elsevier Science S.A.

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Cp2SmCl(THF) reacts with 0.5 equivalent disodium salts of trans-(+/-)-N,N'-bis(salicylidene)-1,2-cyclohexanediamine give the title complex [(eta(5)-C5H5)Sm(mu-OC20H20N2O)](2)(mu-THF)(THF)(2) (1). X-ray crystal determination shows that the molecule is a dimer, in which two (eta(5)C(5)H(5))Sm(mu-OC20H20N2O) units are connected via a THF oxygen and two bridging oxygen atoms of Schiff base ligands. The average Sm-C distance is 2.78(7) Angstrom, while those of Sm-O (bridging THF oxygen) and Schiff base oxygens are 2.79(3) and 2.43(4) Angstrom; respectively. (C) 1998 Elsevier Science Ltd. All rights reserved.

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栉孔扇贝是我国北方一种重要的贝类养殖品种。自1997年以来爆发的栉孔扇贝大规模死亡,给地区经济造成了重大损失并且已经严重威胁着扇贝养殖业的健康发展。然而,到目前为止,对扇贝免疫防御分子机理的了解还很少,深入研究扇贝免疫应答的分子机制是认识和了解病害发生和实现病害控制的重要途径。本研究采用了EST大规模测序和3’RACE的方法,从栉孔扇贝cDNA文库中克隆到一个凝集素基因CfLec-2,并对功能进行了研究。 CfLec-2 cDNA全长708bp,5’非翻译区(Untranslated Region, UTR)含有59bp,3’非翻译区含有163bp,具有典型的多聚腺苷酸加尾信号序列AATAAA和多聚腺苷酸尾巴,开放阅读框(Open Reading Frame, ORF )含有486bp,编码162个氨基酸残基,该多肽的理论分子量为16.8 kDa,等电点为4.54。利用SignalP分析,发现其信号肽的剪切位置在VEA-QSL之间。经BLASTP比对分析可知,CfLec-2基因编码的蛋白与人的Brevican,Anguilla japonica的C-type lectin-1和C-type lectin-2, Rattus norvegicus的CD23有较高的相似性,其中与Brevican的一致性有37%。Clustal W多序列比对发现该多肽具有标准长型C型凝集素所必须的6个保守半胱氨酸和相对保守的糖识别位点。用SMART(Small Modular Architecture Research Tool)软件分析发现其具有一个保守的糖识别结构域(Carbohydrate-recognition Domain, CRD),氨基酸序列上第49、125、141、149位置上的半胱氨酸参与形成糖识别结构域,而位于N末端的第21和32位上的两个半胱胺酸形成额外的一个二硫键,位于115、116和117上的Glu、Pro、Asp则构成了糖识别位点。 将编码CfLec-2成熟肽段的cDNA序列克隆进pET32a(+)载体中,并在大肠杆菌Rosetta-gami(DE3)中重组表达CfLec-2。重组蛋白利用其具有的His tag纯化并复性后发现CfLec-2可以凝集溶血葡萄球菌,且凝集过程不需要钙离子的参与。并且,CfLec-2对大肠杆菌TOP10F’有微弱的抑菌活性,对溶壁微球菌、溶血葡萄球菌和鳗弧菌则没有抑菌活性。这一结果说明,CfLec-2可能不仅参与对入侵微生物的识别过程,而且可能作为效应分子起到了直接杀灭入侵微生物的作用。 本研究发现CfLec-2具有和以前在栉孔扇贝报道的CFLec-1完全不同的功 能,说明栉孔扇贝利用不同的凝集素来识别不同的病原,同时也暗示栉孔扇贝中可能有更多不同功能的凝集素有待发现。研究结果丰富和发展了海水无脊椎动物免疫学的内容,对进一步了解扇贝固有免疫的机制,实现养殖扇贝疾病防治具有重要参考价值。

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在糖化学合成中,1,6-脱水吡喃糖不仅是合成具有生物活性低聚糖、糖共体、抗原、抗体以及天然产物等化合物重要原料,而且还是许多具有生物活性的天然产物的结构单元。同时,它还具有[3,2,1]的双环缩醛结构,使其在糖化学合成中具有高的立体选择性和区域选择性,同时减少了C-1 和C-6 位的保护和去保护的优点。此外,环内的缩醛开环后,又可以相应地在C-1 和C-6 位进行官能团转化以及糖苷化反应。 本文报道了一种新的1,6-脱水吡喃糖的合成方法,并设计合成了2-C-支链-1,6-脱水吡喃葡萄糖1-195、1-197、1-198 以及2-C-支链-6-硫代1,6-脱水吡喃葡萄糖1-225。到目前为止,1,6-脱水糖开环并进行糖苷化反应,存在选择性较差、产率低的缺点。我们发现,在乙腈做溶剂的条件下,NiCl5 能高立体选择性高产率地催化化合物1-195、1-197、1-198 开环并与ROH、RSH 发生糖苷化反应。在NiCl5-乙腈条件下,合成了一系列2-C-支链-α-糖苷和2-C-支链-β-硫代糖苷,并对2-C-支链1,6-脱水吡喃葡萄糖的生成机理以及开环机理进行了探讨。 烯糖在糖化学合成中是重要的起始原料,从Fischer 首次合成烯糖至今,一直不断地有新的合成方法出现。但目前文献报道的方法存在所用试剂有毒、价格贵和操作繁琐等缺点。我们对Fischer-Zach 方法进行了改进, 发现Zn-NaH2PO4-H2O 和Zn-PEG600-H2O 体系都能很好地合成烯糖。该方法具有条件温和、绿色环保、操作简单的优点。在Zn-NaH2PO4 溶液或Zn-PEG600 条件下,以溴代糖为原料,高产率地合成一系列的烯糖。 The 1,6-anhydrohexopyranoses are crucial subunits of myriad bioactive nature products, as well as important syntons of carbohydrate chemistry which have been extensively used to prepare the biologically potential oligosaccharides, glycoconjugates, antibiotics, and structurally varied nature products. Their particular [3.2.1] bicyclic skeleton makes them have high regio- and stereo-control in a variety of reactions, and such structure avoids protecting hydroxyl groups at C1 and C6.Additionally, the cleavage of the internal acetal under acidic conditions could be beneficial for further transformations of functional group and glycosylation of the corresponding pyranosyl sugar at the C6 or C1 site. Herein we developed a novel approach to prepare the 1,6-anhydrohexopyranose, and synthesized the 2-C-branched-1,6-anhydrohexopyranose 1-195, 1-197, 1-198 and 2-C-branched-6-thio-1,6-anhydrohexopyranose 1-225. Until now, glycosylation of 1,6-anhydrohexopyranoses has been limited because of the low yields and low stereoselectivity. In this paper, we found that NiCl5-MeCN system could selectively cleave the ring of 1,6-anhydrohexopyranoses with alcohols and thiols at room temperature in high yields. A series of 2-C-branched-α-glycosides and 2-C-branched-β-thioglycosides have been synthesized via NiCl5-catalyzed. Furthermore, we investigated the formation and ring-opening mechanism of 2-C-acetylmethyl-1,6-anhydrohexopyranose. Glycals are significant starting material in carbohydrate chemistry. After the Fischer-Zach method for forming glucal was reported for the first time, the numerous synthetic methods for glycals have been explored. However, there are several drawbacks in the existing methods, such as the usage of very expensive and toxic reagents, intricate operation, and the influence of acid-sensitive and base-sensitive functional group. We improved the Fischer-Zach method and developed a facile, mild and environmentally benign methodology towards the synthesis of the glycals in Zn-NaH2PO4-H2O or Zn-PEG600-H2O system. Our method involves the treatment of glycosyl bromides with Zn in NaH2PO4 aqueous solution or PEG600-H2O at room temperature, affording various glycals in excellent yields.

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The title compound, dichlorobis{eta(5)-[1-(3-methylbutyl)-cyclohex-1 -yl]cyclopentadienyl}zirconium(IV), [ZrCl2-(C16H25)(2)], has a pseudo-tetrahedral bent-metallocene structure in which the substituted cyclopentadienyl rings are asymmetrically bonded to the central Zr atom, due primarily to the interaction between the large substituents and the Cl atoms. The molecule has local C-2 symmetry with the substituents positioned in a trans arrangement and directed towards the lateral sectors of the bent-metallocene unit.

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2,2′-联吡啶在金电极上需长达10 h 左右才能达到吸附平衡和有足够量的分子来促进细胞色素 c 的电化学反应.需用长时间浸泡膜转移法,减小因促进剂分子吸附强度的变化而造成的差别.

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Two new highly oxygenated nortriterpenoids with a unique norcycloartane skeleton, micrandilactones B and C (1-2), were isolated from Schisandra micrantha; micrandilactone C ( 2) exhibited an EC50 value of 7.71 mu g/mL (SI > 25.94) against HIV-1 replication with minimal cytotoxicity, and the potent anti-HIV-1 activity and unique structural features of 2 make it a promising lead for therapeutic development of a new generation of anti-HIV drug.

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对肺、心等进行组织培养,用空气干燥法制作染色体标本,对贵州3种蝙蝠即中华鼠耳蝠(Myotischinensis)、西南鼠耳蝠(M.altarium)和亚洲长翼蝠(Miniopterus fuliginosus)进行了G-带、C-带带型分析.结果表明,2种鼠耳蝠的G-带基本相同,亚洲长翼蝠的G-带与两种鼠耳蝠有一定同源性;C-带核型中,中华鼠耳蝠和亚洲长翼蝠只有着丝粒带,而西南鼠耳蝠有的染色体有插入C-带和端位C-带.根据带型异同分析讨论了鼠耳蝠和长翼蝠间的进化关系.

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本论文从2,3'-联吡啶出发,利用两个吡啶环上氮的反应活性差异,选择性合成了单烷基盐1-甲基-2,3,-联吡啶盐、1-甲基-1,一氧-2,3,-联吡啶盐和1'-甲基/节基2,3气联吡啶盐,还原单烷基盐合成了天然生物碱毒黎碱、安那他品和异毒黎碱及其衍生物:对异毒黎碱的合成由还原N,-节基盐后脱节基简化为一步实现还原和脱节基直接得到异毒黎碱。通过用(R)-BINOL和(S)-BINOL对N,-节基异毒黎碱拆分得到了旋光纯的N,-节基异毒黎碱和异毒黎碱,-N,-节基异毒黎碱的旋光度[a]D20:-61.50(c=2.0,乙醇),卜异毒黎碱的旋光度fa]D20:-14.4"(c-1.0,乙醇);将C关异毒黎碱用(RMTPA和(s)MT队衍生为Mosher酞胺,应用Mosllel方法确定了C)异毒黎碱手性中心的绝对构型为R型,即(R)-C)异毒黎碱,同时发现,由(R)一MTPA合成的Mosller酞胺中顺式旋转异构体占优。而通常在环胺的Mosller酞胺中,是反式旋转异构体占优。这一例外被MollteCarlo模型模拟计算结果解释:稀溶液中C卜异毒黎碱的Moshel-酞胺,顺式构型能量上比反式更有利。不对称合成天然生物碱更具有挑战性。对异毒黎碱还原合成中的呱l淀烯类中间体,用BINAP-灿催化体系进行了催化不对称还原的合成研究,氢化N'-节基-1,,4,,5,,6,-四氢一2,3,一联吡陡时得到了最高为21.5%的对映体选择性,而对N'-节基一1,,2',5',6,-四氢-2,3'一联吡陡的氢化则只得到了不超过10.0%的对映体选择性。

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在维生素 C 二步发酵中,第二步发酵为混菌发酵。氧化葡萄糖酸杆菌为产酸菌,巨大芽孢杆菌为伴生菌。巨大芽孢杆菌和氧化葡萄糖酸杆菌纯化培养的生物学特性不同于其在混菌培养中的生物学特性。种子液的组成和生物量影响 2-酮基-L-古龙酸的合成。在发酵过程中,采采取适宜的调控措施有利于产酸。Na~+和 H~+可诱导对数生长期的巨大芽孢杆菌发生自溶,Na~+诱导的自溶作用可被 Ca~++抑制。200mM Na~+ 可抑制 2-酮基-L-古龙酸的合成。H~+可抑制稳定期的巨大芽孢杆菌衰亡。本文建立了简便易行的巨大芽孢杆菌的筛选模型,并获得两株耐低 pH 和 2-酮基-L-古龙酸的突变株 Bn 和 B5,与氧化葡萄糖酸杆菌混合培养,发酵转化率可分别提高 4.1%和 3.8%。Bn和 B5 生长的最适 pH 值为 6.0~8.0,可促进氧化葡萄糖酸杆菌的生长,表现为延迟期缩短,稳定期延长。苏云金芽孢杆菌 B529 作为伴生菌与氧化葡萄糖酸杆菌组成的新混合菌系,具有抗污染、稳定高产的特性。B529 和巨大芽孢杆菌释放的分子量在 30~50kDa 和 >100kDa 的组份均可促进氧化葡萄糖酸杆菌产酸,其中 30~50kDa 的组份是促进产酸的关键物质。二菌所释放的活性物质经 Sephadex G-150 柱层析呈现不同的洗脱图谱,说明二菌释放的活性物质成分可能不同。B529 的培养上清液可增强氧化葡萄糖酸杆菌的细胞酶活力和 L-山梨糖胶氢酶的活性。新混全菌系的最适发酵条件被确定,在4M~3 发酵罐中连续被批发酵,平均糖酸转化率提高了 6.4%,发酵周期缩短 7.3h。