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排序方式: 共有473条查询结果,搜索用时 46 毫秒
1.
本文报道了在AppleⅡ型微机上实现核酸数据处理的一系列工作程序。应用这些程序,可进行核酸数据的贮存、对指定的核酸数据结构的改造、限制性内切酶识别位点的检索、核酸序列至蛋白序列的翻译、相关核酸序列及蛋白序列的同源性比较、氨基酸密码使用频率的统计和基因的启动子结构的初步探索等方面的工作。  相似文献   
2.
本文进一步研究了我国不同民族的正常个体以及β地中海贫血患者θ珠蛋白基因5′侧序列中的多态性HincⅡ位点及其遗传性质。在广西壮族正常个体和β地中海贫血纯合子中,该多态性位点的发生频率均为75%,与正常汉族人测得值相近。家系分析资料表明,该多态性位点完全按照孟德尔规律进行遗传。  相似文献   
3.
 本文应用的核酸酶为DNaseⅡ、微球菌核酸酶与限制性内切核酸酶BstNI、EcoRⅡ、HpaⅡ和MspⅠ,将它们作用于正常小鼠615和可移植性白血病小鼠L7712脾脏白细胞染包质及其DNA,根据酶切电泳谱及水解动力学分析表明:1.白血病小鼠染色质相对正常小鼠染色质易被DNaseⅡ微球菌核酸酶水解;2.白血病小鼠染色质比正常小鼠者易被MspⅠ水解,但其DNA的MspⅠ酶切电泳谱无明显差别;3.白血病小鼠染色质及其DNA较正常小鼠染色质及其DNA易被EcoRⅡ水解。这些观察说明,白血病小鼠脾脏白细胞染色质有较活跃的构象状态;其染色质DNA的CCATGC区段内有较低的甲基化程度。  相似文献   
4.
Summary The genetic control of hexokinase isozymes (ATP: d-hexose-6-phosphotransferase, E.C. 2.7.7.1, HEX) in maize (Zea mays L.) was studied by starch gel electrophoresis. Genetic analysis of a large number of inbred lines and crosses indicates that the major isozymes observed are encoded by two nuclear loci, designated Hex1 and Hex2. Five active allozymes and one null variant are associated with Hex1, while Hex2 has nine active alleles in addition to a null variant. Alleles at both loci govern the presence of single bands, with no intragenic or intergenic heteromers visible, suggesting that maize HEX's are active as monomers. Organelle preparations demonstrate that the products of both loci are cytosolic. All alleles, including the nulls, segregate normally in crosses. Vigorous and fertile plants were synthesized that were homozygous for null alleles at both loci, suggesting that other hexosephosphorylating enzymes exist in maize that are undetected with our assay conditions. Linkage analyses and crosses with B-A translocation stocks place Hex1 on the short arm of chromosome 3, 27 centimorgans from Pgd2 (phosphogluconate dehydrogenase) and Hex2 on the long arm of chromosome 6, approximately 45 centimorgans from Pgd1. It is suggested that the parallel linkages among these two pairs of duplicated genes reflects an evolutionary history involving chromosome segment duplication or polyploidy.Paper No. 10170 of the Journal Series of the North Carolina Agricultural Research Service, Raleigh, NC  相似文献   
5.
Repeated washing of a brain mitochondrial fraction results in a progressive decrease in the proportion of mitochondrially bound hexokinase that can be solubilized during a subsequent incubation with glucose-6-phosphate (glucose-6-P). Phospholipids removed during the washing procedure can be added back to washed mitochondria, resulting in enhancement of the solubilization by glucose-6-P. Column and thin-layer chromatographic methods have been used to isolate and identify active phospholipids. Additional studies were performed with purified lipids obtained commercially. Both lysophospholipids and acidic phospholipids were active in enhancing solubilization of hexokinase by glucose-6-P. Phospho-inositides, particularly diphosphoinositide, were quite effective, raising the possibility that the actively metabolized phosphoinositides may be involved in regulation of hexokinase binding in vivo.  相似文献   
6.
Cytoplasmic hexokinase (ATP: D-hexose 6-phosphotransferase, EC 2.7.1.1) was purified from the soluble fraction of a rat brain homogenate by a procedure that included a unique affinity elution of the enzyme from Blue Dextran-Sepharose. The purified enzyme was examined with respect to properties in which the impure cytoplasmic enzyme has been reported to differ from the solubilized mitochondrial enzyme. These included the ability to bind to mitochondria, inhibition by quercetin, effect of pH on activity, and kinetics. In all regards the purified mitochondrial and cytoplasmic enzymes appeared identical. In addition, comparative peptide maps after partial proteolysis showed no detectable differences. These results do not support the view that there exist distinct mitochondrial and cytoplasmic forms of hexokinase, the latter being permanently relegated to a cytoplasmic location and unable to participate in a dynamic equilibrium with the mitochondrially-bound enzyme. Alternatives are proposed to explain previous results that had been interpreted as indirect evidence for the existence of a distinct cytoplasmic hexokinase.  相似文献   
7.
 在肉色诺卡氏菌C-212株Nocardia carnea C-212中筛选到一种Ⅱ型限制性核酸内切酶NcrⅠ,经与BglⅡ的λDNA降解物的酶谱比较,以及酶识别特异性和切割位点的检测,证明了NcrⅠ是已知的限制酶BglⅡ的同切限制酶,而且其切割位点也与BglⅡ相同,其为:  相似文献   
8.
利用大鼠肝脏线粒体为材料,以琥珀酸为底物,研究了不同浓度的丹参酮Ⅱ-A磺酸钠对线粒体态4、态3呼吸及呼吸控制率,线粒体跨膜电位,线粒体呼吸链复合体(Ⅱ+Ⅲ)电子传递及质子转移活性的影响。结果证明丹参酮ⅡA-磺酸钠是线粒体呼吸链复合体(Ⅱ+Ⅲ)的有效抑制剂。文中对丹参酮ⅡA-磺酸钠在心肌缺血再灌注过程中的保护作用的分子机理进行了讨论。  相似文献   
9.
用四氮唑蓝光化学还原法对所合成的KCu(IDA)(Ser)·2H2O、KCu(IDA)(Ala)·H2O、Cu(IDA)(en)、KCu(IDA)(Gly)·H2O和Cu(IDA)·2H2O(IDA=N(羧基甲基)-甘氨酸,Ser=丝氨酸,Ala=丙氨酸,en=乙二胺,Gly=甘氨酸)等5种氨基酸─铜(Ⅱ)配合物进行了活性测定,发现它们均具有天然超氧化物歧化酶活性,其活性依次为0.34、0.45、0.50、0.54、0.72Cuμmol·L-1。  相似文献   
10.
Andreas Renz  Mark Stitt 《Planta》1993,190(2):166-175
The substrate dependence and product inhibition of three different fructokinases and three different hexokinases from growing potato (Solanum tuberosum L.) tubers was investigated. The tubers contained three specific fructokinases (FK1, FK2, FK3) which had a high affinity for fructose K m=64, 90 and 100 (M) and effectively no activity with glucose or other hexose sugars. The affinity for ATP (K m=26, 25 and 240 M) was at least tenfold higher than for other nucleoside triphosphates. All three fructokinases showed product inhibition by high fructose (K i=5.7, 6.0 and 21 mM) and were also inhibited by ADP competitively to ATP. Sensitivity to ADP was increased in the presence of high fructose, or fructose-6-phosphate. In certain conditions, the K i (ADP) was about threefold below the K m (ATP). All three fructokinase were also inhibited by fructose-6-phosphate acting non-competitively to fructose (K i=1.3 mM for FK2). FK1 and FK2 showed very similar kinetic properties whereas FK3, which is only present at low activities in the tuber but high activities in the leaf, had a generally lower affinity for ATP, and lower sensitivity to inhibition by ADP and fructose. The tuber also contained three hexokinases (HK1, HK2, HK3) which had a high affinity for glucose (K m=41, 130 and 35 M) and mannose but a poor affinity for fructose (K m=11, 22 and 9 mM). All three hexokinases had a tenfold higher affinity for ATP (K m=90, 280 and 560 M) than for other nucleoside triphosphates. HK1 and HK2 were both inhibited by ADP (K i=40 and 108 M) acting competitively to ATP. HK1, but not HK2, was inhibited by glucose-6-phosphate, which acted non-competitively to glucose (K i=4.1 mM). HK1 and HK2 differed, in that HK1 had a narrower pH optimum, a higher affinity for its substrate, and showed inhibition by glucose-6-phosphate. The relevance of these properties for the regulation of hexose metabolism in vivo is discussed.Abbreviations FK fructokinase - Fru6P fructose-6-phosphate - Glc6P glucose-6-phosphate - HK hexokinase - NTP nucleoside triphosphate - Pi inorganic phosphate - UDPGlc uridine-5-diphosphoglucose This work was supported by the Deutsche Froschungsgemeinschaft (SFB 137). We are grateful to Professor E. Beck (Lehrstuhl für Pflanzenphysiologie, Universität Bayreuth, FRG) for providing laboratory facilities.  相似文献   
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