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61.
Wilfried Morawetz 《Plant Systematics and Evolution》1984,145(1-2):29-39
InPorcelia goyazensis (2n = 18) Giemsa C-banding patterns differ from those ofAnnona reticulata (2n = 14) and reveal structural heterozygosity. The amplitude of karyological variation in theAnnonaceae is greater than expected for a primitive woody family. In a comparison with other tropical angiosperm groups, the highly differentiated karyotype ofDrimys brasiliensis (2n = 86) is interpreted as being the end-point of numerous karyological changes. 相似文献
62.
The relationship between membrane structural properties and functions has been generally inferred from observed thermotropic phenomena. By the use of 16-dinyloxyl stearic acid spin probe we investigated the red blood cell membrane components involved in three characteristic thermotropic structural transitions occurring at 8, 20, and 40 degrees C. The transition at 8 degrees C is removed by chymotrypsin treatment at the cytoplasmic membrane layer. The 20 degrees C phase transition is unmodified after chymotrypsin treatment and occurs at 15 degrees C after complete proteolysis of intramembrane chymotrypsin-insensitive peptides. Liposomes from the total lipid extract of RBC show only one thermotropic transition at 15 degrees C. The 40 degrees C phase transition is absent in vesicles free of skeletal proteins, in vesicles obtained after RBC storage, and in low-ionic-strength resealed ghosts. Transitions at 8 degrees C and 40 degrees C appear to be due to the interactions of cytoplasmic exposed proteins with membrane, whereas the 20 degrees C transition is intrinsic to the lipid component. 相似文献
63.
Human β-glucuronidase: Assignment of the structural gene to chromosome 7 using somatic cell hybrids 总被引:1,自引:0,他引:1
P. A. Lalley J. A. Brown R. L. Eddy L. L. Haley M. G. Byers A. P. Goggin T. B. Shows 《Biochemical genetics》1977,15(3-4):367-382
-Glucuronidase (GUS) has become an important enzyme model for the genetic study of molecular disease, enzyme realization, and therapy, and for the biogenesis and function of the lysosome and lysosomal enzymes. The genetics of human -glucuronidase was investigated utilizing 188 primary man-mouse and man-Chinese hamster somatic cell hybrids segregating human chromosomes. Cell hybrids were derived from 16 different fusion experiments involving cells from ten different and unrelated individuals and six different rodent cell lines. The genetic relationship of GUS to 28 enzyme markers representing 19 linkage groups was determined, and chromosome studies on selected cell hybrids were performed. The evidence indicates that the -glucuronidase gene is assigned to chromosome 7 in man. Comparative linkage data in man and mouse indicate that the structural gene GUS is located in a region on chromosome 7 that has remained conserved during evolution. Involvement of other chromosomes whose genes may be important in the final expression of GUS was not observed. A tetrameric structure of human -glucuronidase was demonstrated by the formation of three heteropolymers migrating between the human and mouse molecular forms in chromosome 7 positive cell hybrids. Linkage of GUS to other lysosomal enzyme genes was investigated. -Hexosaminidase HEX
B) was assigned to chromosome 5; acid phosphatase2
(ACP
2) and esterase A4
(ES-A
4) were assigned to chromosome 11; HEX
A was not linked to GUS; and -galactosidase (-GAL) was localized on the X chromosome. These assignments are consistent with previous reports. Evidence was not obtained for a cluster of lysosomal enzyme structural genes. In demonstrating that GUS was not assigned to chromosome 9 utilizing an X/9 translocation segregating in cell hybrids, the gene coding for human adenylate kinase1 was confirmed to be located on chromosome 9.Supported by NIH Grants HD 05196, GM 20454, and GM 06321, by NSF Grant BMS 73-07072, and by HEW Maternal and Child Health Service, Project 417. 相似文献
64.
Junichi Kitajima Tetsuya Komori Toshio Kawasaki Hans-rolf Schulten 《Phytochemistry》1982,21(1):187-192
From the aerial parts of Fritillaria thunbergii, three glycosidal Solanum alkaloids (basic steroid saponins) were isolated together with minor 相似文献
65.
Alessandro Ballio Renato Capasso Antonio Evidente Giuliano Grandolini Giacomino randazzo 《Phytochemistry》1982,21(7):1810-1811
The stereostructure of cotylenol, the aglycone of the cotylenins, has been confirmed by chemical correlation with the aglycone of fusicoccin A. 相似文献
66.
Eszter Gács-Baitz Lajos Radics G.B. Oganessian Vilen A. Mnatsakanian 《Phytochemistry》1978,17(11):1967-1973
The structure and stereochemistry of teucrins H1, H2, H3 and H4, four novel diterpenes from Teucrium hyrcanicum have been established by detailed studies of the PMR and 13C NMR spectra, CD results and chemical transformations. Teucrin H4, a minor constituent is shown to possess a unique stereochemistry hitherto not reported for related diterpenoids. 相似文献
67.
Solvent-extractable lipids in Pinus densiflora pollen were investigated. The cis- and trans-isomers of 1,16-dioxo-, 1-hydroxy-16-oxo- and 1, 16-dihydroxyhexadecan-7-yl p-coumarates were identified. 相似文献
68.
The structure for trichoclin, (E)-8-(3-methyl-4-hydroxy-2-butenyloxy)-psoralen, a new furocoumarin isolated from Trichocline incana, has been established. Phellopterin and isopimpinellin were also obtained. The new side chain of trichoclin was confirmed by synthesis. 相似文献
69.
木犀科11属19个种叶绿体基因组的一般特征和变异特征的比较分析显示, 结果表明, 该科叶绿体基因组大小为154-165 kb, 其差异主要是大单拷贝(LSC)长度的差异所致。Jasminum属3个物种的叶绿体基因组长度与其余物种有较大差异, 该属clpP基因内含子和accD基因丢失。共线性分析表明, Jasminum属3个物种多个基因出现基因重排现象, 倒位可能是重排的主要原因。Jasminum属在IRb/SSC和SSC/IRa边界的基因均与其它物种不同; 重复序列与SSR数量检测结果表明, Jasminum属与其余物种在数量及重复长度上差异较大。基于CDS数据构建的系统发育树表明, Abeliophyllum distichum和Forsythia suspensa为木犀科中较早分化的类群。 相似文献
70.
Gertrude M. Pfaffenbach Roger W. Melvold Stanley G. Nathenson 《Biochemical genetics》1990,28(7-8):433-441
The “bg” series of MHC mutations is the most prevalent type of mutations of Kb in C57BL/6 mice screened by reciprocal tail skin grafting. The basis for identification of this series of mutations is the
incompatibility of grafts between the parental B6 and the mutant. This series takes the longest to reciprocally reject the
skin grafts. The series can be subdivided into “bg 1” and “bg 2” groups based on Kb-restricted recognition of virus-infected mutant target cells. The biochemical basis for these mutations are amino acid substitutions
at residues 116 and 121 of the Kb transplantation antigen. These substitutions do not alter monoclonal antibody binding sites. The structural basis of MAb
binding and the genetic basis of the mutation are discussed.
This study was supported in part by USPHS Grants AI-07289, AI-10702, NCI P30-CA-13330, American Cancer Society Grant IM-236,
and American Cancer Society Fellowship PF-2126. Stanley G. Nathenson is a member of the Irvington House Institute for Medical
Research. 相似文献