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31.
鹅掌楸雌配子体败育对生殖的影响 总被引:12,自引:0,他引:12
胚珠和雌配子体败育是限制鹅掌楸生殖成功的一个重要因素。中国东部和西部鹅掌楸种群在雌配子体发育的各阶段上的败育程度有差异,以西部种群的发育较好。西部分布区较合适的生境促进了胚囊的发育,一定温度和湿度的环境可以活化珠心细胞输送营养物质供给雌配子体发育,提高受精和结籽的能力 相似文献
32.
探讨了研制的具有谷胱甘肽过氧化物酶活力的含硒抗体酶(GPX-abzyme)对于受损心肌线粒体的保护作用,利用牛的心肌线粒体为实验材料,通过线粒体的膨胀度、脂质过氧化物含量、CCO活力变化及电镜观察等几个方面证明GPX-abzyme能抵抗XO/HX系统产生的自由基的损伤作用,ESR研究也表明GPX-abzyme能明显降低XO/HX损伤系统中的自由基含量。 相似文献
33.
木瓜蛋白酶PPAⅢ自水解作用 总被引:1,自引:0,他引:1
木瓜蛋白酶PPAⅢ自水解作用王秀艳,周慧,葛玉斌,李惟(吉林大学分子生物学系,长春130023)PPAⅢ、papain、pepsine、stembromelain等都属于以Cys-SH为活性中心的酶,同种分子之间存在着一种相互切割的趋势,称为酶自水解... 相似文献
34.
Laminin and Neuropeptide Y Are Increased by Synapsin Transfection in Cultured NG108-15 Neuroblastoma/Glioma Hybrid Cells 总被引:2,自引:0,他引:2
† Gabriel Fried Hui Quan Han ‡Björn Meister ‡Tomas Hökfelt Paul Greengard 《Journal of neurochemistry》1995,64(6):2674-2680
Abstract: We have investigated the presence and expression of laminin and neuropeptide Y (NPY) in several NG108-15 cell lines transfected with synapsin Ib, IIa, or IIb. The content of laminin, a basal membrane glycoprotein that promotes adhesion and induces neurite outgrowth and neuronal differentiation, was increased in all transfected cell lines examined. In cells that were chemically differentiated with prostaglandin E1 plus 3-isobutyl-1-methylxanthine, laminin levels were increased even further. The content of NPY, suggested to be a neurotransmitter/neuromodulator in peripheral sympathetic neurons as well as in central neurons, was also increased in all transfected cell lines examined. Immunohistochemical analysis combined with confocal laser microscopy showed that NPY staining was granular and very often enriched in neuritic varicosities. The distribution and the staining pattern of NPY were consistent with storage of NPY in large dense-cored vesicles. The results indicate that, in differentiated neurons, the synapsins increase the levels of a neuropeptide transmitter stored in large dense-cored vesicles and of an extracellular matrix protein associated with neuronal maturation. 相似文献
35.
Thermotolerance in cultures of Chlorella zofingiensis was induced by heat shock treatment at supraoptimal temperatures (40and
45 °C for 30 min). Thermotolerance was assayed by two methods: the survival of the cells at 70 °C and the growth of diluted
cultures at 35 and 45 °C. A culture without heat shock treatment was unable to grow at 45 °C. According to eletrophoretic
analyses, the synthesis of proteins of 95, 73, 60, 43 and 27 kDa was induced by heat shock treatment. The large molecular
weight proteins (95, 73, 60 and43 kDa) were present in non-heat treated cells, but the heat shock treatment increased their
quantity in cells. The synthesis of a low molecular weight protein (27 kDa) was induced by heat shock treatment. The induced
thermotolerance could be inhibited by the presence of an 80S ribosomal translation inhibitor, cycloheximide(CHI). The first
12 amino acid residues from the N-terminus of the27 kDa heat shock induced protein are Val-Glu-Trp-Try-Gly-Pro-Asn-Arg-Ala-Lys-Phe-Leu.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
36.
HhaI and HpaII DNA methyltransferases bind DNA mismatches, methylate uracil and block DNA repair. 总被引:10,自引:7,他引:3 下载免费PDF全文
The hydrolytic deamination of 5-methylcytosine (5-mC) to thymine (T) is believed to be responsible for the high mutability of the CpG dinucleotide in DNA. We have shown a possible alternate mechanism for mutagenesis at CpG in which HpaII DNA-(cytosine-5) methyltransferase (M.HpaII) can enzymatically deaminate cytosine (C) to uracil (U) in DNA [Shen, J.-C., Rideout, W.M., III and Jones, P.A., Cell, 71, 1073-1080, (1992)]. Both the hydrolytic deamination of 5-mC and enzymatic deamination of C create premutagenic DNA mismatches (G:U and G:T) with the guanine (G) originally paired to the normal C. Surprisingly, we found that DNA-(cytosine-5) methyltransferases have higher affinities for these DNA mismatches than for their normal G:C targets and are capable of transferring a methyl group to the 5-position of U, creating T at low efficiencies. This binding by methyltransferase to mismatches at the recognition site prevented repair of G:U mismatches by uracil DNA glycosylase in vitro. 相似文献
37.
38.
Ergosta-5,7,9,22-tetraen-3-β-ol (dehydroergosterol) was synthesized and employed as a probe of cholesterol behavior in phospholipid bilayers. Circular dichroism (CD) spectra were obtained. The CD of dehydroergosterol in sonicated egg phosphatidylcholine vesicles was dependent on cholesterol concentration, while in unsonicated egg phosphatidylcholine liposomes and in vesicles obtained by oxctylglucoside dialysis, the CD observed was independent of cholesterol content. The CD of dehydroergosterol in sonicated sphingomyelin vesicles exhibited a different dependence on cholesterol content than seen in sonicated egg phosphatidylcholine vesicles. These data are interpreted in terms of differences between the packing of cholesterol in systems of large and small radii of curvature and in different interactions between dehydroergosterol and phosphatidylcholine and sphingomyelin. 相似文献
39.
Karol Mičieta 《Folia Geobotanica》1983,18(3):329-331
40.
Site-specific mutagenesis of an essential histidine residue in pancreatic cholesterol esterase 总被引:2,自引:0,他引:2
The histidine residue essential for the catalytic activity of pancreatic cholesterol esterase (carboxylester lipase) has been identified in this study using sequence comparison and site-specific mutagenesis techniques. In the first approach, comparison of the primary structure of rat pancreatic cholesterol esterase with that of acetylcholinesterase and cholinesterase revealed two conserved histidine residues located at positions 420 and 435. The sequence in the region around histidine 420 is quite different between the three enzymes. However, histidine 435 is located in a 22-amino acid domain that is 47% homologous with other serine esterases. Based on this sequence homology, it was hypothesized that histidine 435 is the histidine residue essential for catalytic activity of cholesterol esterase. The role of His435 in the catalytic activity of pancreatic cholesterol esterase was then studied by the site-specific mutagenesis technique. Substitution of the histidine in position 435 with glutamine, arginine, alanine, serine, or aspartic acid abolished the ability of cholesterol esterase to hydrolyze p-nitrophenyl butyrate and cholesterol [14C]oleate. In contrast, mutagenesis of the histidine residue at position 420 to glutamine had no effect on cholesterol esterase enzyme activity. The results of this study strongly suggested that histidine 435 may be a component of the catalytic triad of pancreatic cholesterol esterase. 相似文献