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1.
In a meritorious effort H. de Rothschild compiled in 1899 all publications on mammary gland development and milk – a grand
total of 8375 [1]. In the preface to this publication Duclaux states: ‘Such a discrepancy between the tremendous efforts and
the paltriness of the results – hundreds of scientists and thousands of research years, just to create 200 or 300 pages of
truth’. The number of papers added since then must be enormous. Rather than reviewing a vast literature, I will take the liberty
and focus on research which, in my opinion, shaped our understanding of hormone controlled gene expression in the developing
breast.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
2.
3.
Dr. Lothar Jennes Duane Bronson Walter E. Stumpf P. Michael Conn 《Cell and tissue research》1985,239(2):311-315
Summary Participation of calmodulin, clathrin, and actin in receptor mediated endocytosis of gonadotropin-releasing hormone (GnRH) was studied in an in vitro system of dispersed pituitary cells with a triple staining procedure. Cells were incubated in D-Lys6-Pro9-Des10-GnRH-biotin and stained with avidin-peroxidase-diaminobenzidine. Calmodulin, clathrin, and actin as well as luteinizing hormone were identified by indirect immunofluorescence with FITC- and rhodamine-labeled second antibody. The results indicate a close spatial association of calmodulin, but not of clathrin and actin, with GnRH-containing plasma membrane patches.Supported by PHS grants NIH NS1761401, HS 09914, and HD 19899 相似文献
4.
Ernst Bause Thomas Müller Lothar Jaenicke 《Archives of biochemistry and biophysics》1983,220(1):200-207
Particulate membrane fractions from Volvox carteri catalyze the transfer of mannose from GDP-mannose to dolichyl diphosphate-[14C]chitobiose to form lipid-linked oligosaccharides up to a dolichyl diphospnate-chitobiose-(mannose)5 structure. Mannosylation of the chitobiosyl lipid requires divalent cations and detergents as solubilizing agents. Depending on the nature of the detergent, the oligosaccharide pattern differs markedly: With deoxycholate or the zwitterionic detergent 314 a lipid-linked trisaccharide accumulates. The nonionic Triton X-100, however, gives rise to a spectrum of compounds up to a heptasaccharide. Enzyme digestion of the tri- and pentasaccharide structure, obtained after mild acid hydrolysis of the corresponding [14C]glycolipids, revealed that the first mannose is bound via a β-glycosidic linkage to the chitobiosyl core, whereas the outer mannose residues are linked as α-mannosides. Our studies indicate that, in agreement with recent findings in other organisms, the innermost α-mannosidic residues are donated directly from GDP-mannose. The structure of oligosaccharides synthesized by Volvox membranes is thus consistent with results from other eucaryotic species, suggesting a common pathway of N-glycosylation of glycoproteins. 相似文献
5.
Lothar Glatz 《Zoomorphology》1972,72(1):1-25
The spinning apparatus of the Haplogynae was studied in cribellate and ecribellate families of this group. Profound differences were encountered between the species investigated. It is concluded that the group of the Haplogynae is polyphyletic and can not be maintained in a phylogenetic system of the Araneae.
Sonderdruckanforderungen an: Prof. Dr. Peter Ax II. Zoologisches Institut und Museum der Universität D-3400 Göttingen Berliner Str. 28 Deutschland 相似文献
Sonderdruckanforderungen an: Prof. Dr. Peter Ax II. Zoologisches Institut und Museum der Universität D-3400 Göttingen Berliner Str. 28 Deutschland 相似文献
6.
Lothar Geitler 《Plant Systematics and Evolution》1970,118(1-2):197-200
Zusammenfassung Außer einer schon bekannten automiktisch-pädogamen und einer allogamen Kleinsippe vonGomphonema angustatum wird im Bereich der Biologischen Station Lunz eine weitere pädogame Sippe festgestellt, die sich von den anderen Kleinsippen deutlich unterscheidet. Von den drei Kleinsippen kommen manche zu zweit gemeinsam, andere allein an verschiedenen Fundorten vor. Wie die nähere Untersuchung der beiden pädogamen Sippen zeigt, ist auch beiGomphonema das Perizonium aus ringförmigen verkieselten Stücken zusammengesetzt.Dem Leiter der Biologischen Station Lunz, Herrn Prof. Dr.Heinz Löffler, danke ich auch an dieser Stelle bestens für die Bereitstellung der Behelfe des Instituts. 相似文献
7.
Felix Gisela; Altmann Thomas; Uwer Ursula; Jessop Alison; Willmitzer Lothar; Morris Peter-Christian 《Journal of experimental botany》1996,47(8):1007-1017
A novel Arabidopsis thaliana (L.) Heynh. developmental mutant,waldmeister (wam), is described. This mutant was found in theprogeny arising from an Ac-Ds tagging experiment, but does notappear to be tagged by an introduced transposon. This recessivenuclear mutation maps between GAPB and ap1 on chromosome 1 andshows extreme morphological and physiological changes in bothfloral and vegetative tissues. Changes to the vegetative phenotypeinclude altered leaf morphology, multiple rosettes, stem fasciation,retarded senescence and disturbed geotropic growth. Changesto the floral phenotype include delayed flowering, increasednumber of inflorescences, determinate inflorescences, alterednumber and morphology of floral organs, chimeric floral organs,and ectopic ovules . wam was crossed to a number of previouslydescribed floral mutants: apetela 2, apetela 3, pistillata,agamous, and leafy. The phenotype of the double mutant was ineach case additive. In the case of agamous, however, the indeterminaterepetitive floral structure of agamous was lacking, emphasizingthe determinate inflorescence growth of wam. The extreme phenotypeof the wam mutant is suggestive of a disturbance to a gene ofglobal importance in the regulation of plant growth and development. Key words: Arabidopsis thaliana, waldmeister, developmental mutant, flower mutant 相似文献
8.
Thomas Altmann Gisela Felix Alison Jessop Annette Kauschmann Ursula Uwer Hugo Peña-Cortés Lothar Willmitzer 《Molecular genetics and genomics : MGG》1995,247(5):646-652
Using a two-component Ac/Ds system consisting of a stabilized Ac element (Acc1) and a non-autonomous element (DsA), 650 families of plants carrying independent germinal DsA excisions/transpositions were isolated. Progenies of 559 of these Acc1/DsA families, together with 43 families of plants selected for excision/transposition of wild-type (wt)Ac, were subjected to a broad screening program for mutants exhibiting visible alterations. This resulted in the identification of 48 mutants showing a wide variety of mutant phenotypes, including embryo lethality (24 mutants), chlorophyll defects (5 mutants), defective seedlings (2 mutants), reduced fertility (5 mutants), reduced size (3 mutants), altered leaf morphology (2 mutants), dark green, unexpanded rosette leaves (3 mutants), and aberrant flower or shoot morphology (4 mutants). To test whether these mutants were due to transposon insertions, a series of Southern blot experiments was performed on 28 families, comparing in each case several mutant plants with others showing the wild-type phenotype. A preliminary analysis revealed in 4 of the 28 families analyzed a common, novel DsA fragment in all mutant plants, which was present only in heterozygous plants with wt phenotype, as expected for DsA insertion mutations. These four mutants included two showing embryo lethality, one with dark green, unexpanded rosette leaves and stunted inflorescences, and one with curly growth of stems, leaves and siliques. Further evidence for DsA insertion mutations was obtained for one embryo lethal mutant and for the stunted mutant, while in case of the second embryo lethal mutant, the DsA insertion could be separated from the mutant locus by genetic recombination. 相似文献
9.
Heidrun Herrmann Christian Müller Ingmar Schmidt Jens Mahnke Lothar Petruschka Karin Hahnke 《Molecular genetics and genomics : MGG》1995,247(2):240-246
The genetic organization of the DNA region encoding the phenol degradation pathway ofPseudomonas putida H has been investigated. This strain can utilize phenol or some of its methylated derivatives as its sole source of carbon and energy. The first step in this process is the conversion of phenol into catechol. Catechol is then further metabolized via themeta-cleavage pathway into TCA cycle intermediates. Genes encoding these enzymes are clustered on the plasmid pPGH1. A region of contiguous DNA spanning about 16 kb contains all of the genetic information necessary for inducible phenol degradation. The analysis of mutants generated by insertion of transposons and cassettes indicates that all of the catabolic genes are contained in a single operon. This codes for a multicomponent phenol hydroxylase andmeta-cleavage pathway enzymes. Catabolic genes are subject to positive control by the gene product(s) of a second locus. 相似文献
10.
Dieter Heineke Kathrin Wildenberger Uwe Sonnewald Lothar Willmitzer Hans W. Heldt 《Planta》1994,194(1):29-33
The subcellular distribution of hexoses, sucrose and amino acids among the stromal, cytosolic and vacuolar compartments was analysed by a nonaqueous fractionation technique in leaves of tobacco (Nicotiana tabaccum L.) wild-type and transgenic plants expressing a yeast-derived invertase in the cytosolic, vacuolar or apoplasmic compartment. In the wild-type plants the amino acids were found to be located in the stroma and in the cytosol, sucrose mainly in the cytosol and up to 98% of the hexoses in the vacuole. In the leaves of the various transformants, where the contents of hexoses were greater than in wild-type plants, again 97–98% of these hexoses were found in the vacuoles. It is concluded that leaf vacuoles contain transporters for the active uptake of glucose and fructose against a high concentration gradient. A comparison of estimated metabolite concentrations in the subcellular compartments of wild-type and transformant plants indicated that the decreased photosynthetic capacity of the transformants is not due to an osmotic effect on photosynthesis, as was shown earlier to be the case in transformed potato leaves, but is the result of a long-term dedifferentiation of tobacco leaf cells to heterotrophic cells.Abbreviations apo-inv
tobacco plant with yeast invertase in the apoplasm
- Chl
chlorophyll
- cy-inv
tobacco plant with yeast invertase in the cytosol
- vac-inv
tobacco plant with yeast invertase in the vacuole
- WT
wild-type tobacco plant
The authors thank A. Großpietsch for her able technical assistance. This work has been supported by the Bundesminister für Forschung und Technologie. 相似文献