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71.
Polymorphonuclear leukocyte migration through human amnion membrane   总被引:12,自引:3,他引:9       下载免费PDF全文
A new in vitro model has been developed for studying migration of human polymorphonuclear leukocytes (PMN) through living native cellular and matrix barriers. Human amnion membrane consists of a single layer of epithelium bound to a continuous basement membrane interfacing an avascular collagenous stroma. Living amnion was placed in plastic chambers with separate compartments on each side of the membrane. PMN were introduced on the epithelial side of the amnion, and a Millipore filter (Millipore Corp., Bedford, Mass.) was placed against the stromal side. In response to N-formylmethionyl-leucyl- phenylanlanine (FMLP) chemoattractant, PMN penetrated the full thickness of the amnion and were collected and counted on the filter. The rate of PMN traversal of the amnion was dependent on the concentration of FMLP (optimal at 10(-8)M) as well as the slope of the FMLP gradient across the amnion. The route of PMN migration was studied by transmission electron microscopy. PMN first attached to the epithelial surface, then infiltrated between intercellular junctions. PMN migrated around or through tight junction and hemidesmosome attachments. The PMN then penetrated the basement membrane and migrated through the dense collagenous stroma. The present amnion migration system has characteristics of the in vivo inflammatory state not described in any previous method for monitoring PMN migration in vitro. Prior methods have not used native epithelium, whole basement membrane, or collagenous stroma. PMN penetration of these barriers occurs in the normal inflammatory response and probably involves biochemical mechanisms not required for simple migration through the pores of an artificial filter. The amnion system can be useful for future biochemical and morphological studies of PMN penetration of these barriers and possible repair processes that may follow.  相似文献   
72.
73.
  • 1 Tilapia tholloni (Substratbrüter), T. nilotica (weiblicher Maulbrüter) und T. heudeloti macrocephala (männlicher Maulbrüter) wurden künstlich erbrütet und ihre angeborenen Kontaktreaktionen in standardisierten Attrappenversuchen untersucht.
  • 2 Das Kontaktverhalten muß während einer kritischen Phase (bei T. nilotica unter den angegebenen Versuchsbedingungen bis ungefähr zum 21. Tag nach dem Ablaichen) aktiviert werden, wenn es längere Zeit andauern soll (= Reaktionsphase). Die Reaktionsphase kann bei T. nilotica mehrere Wochen dauern. In ihr nimmt die Reaktionsstärke (Anzahl und Dauer der Kontakte) zunächst rasch zu, erreicht ein Maximum und nimmt dann allmählich wieder ab. Anstieg, Maximum und Abnahme sind an bestimmte Entwicklungsabschnitte gebunden, weitgehend unabhängig davon, ob die Tiere zuvor schon Kontaktverhalten geäußert haben oder nicht. Die Kontaktreaktionen unterscheiden sich u. a. durch die Dauer der Kontakte: tholloni = 0,7 Sek., nilotica = 86,5 Sek., heudeloti m. = 1,5 Sek. je Tag und Tier (Maximalwerte bei bestimmten, für alle Arten gleichen Versuchsbedingungen).
  • 3 Von der Aufzuchttemperatur hängt es ab, in welchem Entwicklungsabschnitt die Reaktionsphase liegt. Das Reaktionsmaximum junger T. nilotica lag bei 24° C am 9., bei 29° C am Tag nach der Eiablage.
  • 4 Geblendete nilotica-Jungfische zeigten nur zu Beginn der Reaktionsphase schwaches Kontaktverhalten, normale Tiere äußerten gegenüber einer durchsichtigen Glasattrappe abgeschwächtes, nur kurze Zeit dauerndes Kontaktverhalten. Das Kontaktverhalten wird durch mechanische (Strömung) und optische Reize ausgelöter und gesteuert.
  • 5 Junge Maulbrüter aus kleinen Eiern erreichten eine längere Kontaktdauer als solche aus größeren. Nach künstlicher Reduktion der Dottermenge um 10–20%) erhöhte sich die Kontaktdauer bei jungen nilotica um 23,1%, die Zahl der Kontakte nahm gleichzeitig um 7,6% ab. Die ♀♀ der substratbrütenden T. mariae legen große Eier, die Jungen zeigten gegenüber Attrappen intensive Kontaktreaktionen. Es wird die Frage diskutiert, ob das Erreichen einer bestimmten Eigröße eine Voraussetzung für das Entstehen des Kontaktverhaltens gewesen sein könnte.
  • 6 Die Kurzkontakte junger T. tholloni werden aus ihrer Orientierungsreaktion abgeleitet und als Vorstufe des Kontaktverhaltens gedeutet.
  • 7 7. Mehrere Tilapia-Arten wurden künstlich gekreuzt. Bei Verwendung von tholloni-Sperma wiesen die Bastarde eine erhöhte Sterblichkeit auf. Aus der Kreuzung T. tholloni ♀ ~ T. nilotica ♂ (Substratbrüter ~ weiblicher Maulbrüter) gingen nur ♀♀ hervor. Die Kreuzung T. heudeloti macrocephala ~ T. nilotica (männlicher ~ weiblicher Maulbrüter) erbrachte fertile F1- und F2-Generationen sowie alle vier möglichen Rückkreuzungen. Bei der Vererbung des Kontaktverhaltens (gemessen an der Dauer der Kontakte) scheinen relativ wenig Erbfaktoren mitzuwirken, T. heudeloti m. erwies sich gegenüber nilotica als praevalent. Ein Teil der Bastarde aus der Kreuzung T. tholloni ♀ ~ T. nilotica ♂ (F1) (Substratbrüter ~ weiblicher Maulbrüter) lag auf der Merkmalsskala zwischen den Ausgangsarten, der Rest verteilte sich sowohl auf den Bereich von tholloni als auch auf den Bereich von nilotica.
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74.
The crystal structure of recombinant Streptomyces rubiginosus D-xylose isomerase (D-xylose keto-isomerase, EC 5.3.1.5) solved by the multiple isomorphous replacement technique has been refined to R = 0.16 at 1.64 A resolution. As observed in an earlier study at 4.0 A (Carrell et al., J. Biol. Chem. 259: 3230-3236, 1984), xylose isomerase is a tetramer composed of four identical subunits. The monomer consists of an eight-stranded parallel beta-barrel surrounded by eight helices with an extended C-terminal tail that provides extensive contacts with a neighboring monomer. The active site pocket is defined by an opening in the barrel whose entrance is lined with hydrophobic residues while the bottom of the pocket consists mainly of glutamate, aspartate, and histidine residues coordinated to two manganese ions. The structures of the enzyme in the presence of MnCl2, the inhibitor xylitol, and the substrate D-xylose in the presence and absence of MnCl2 have also been refined to R = 0.14 at 1.60 A, R = 0.15 at 1.71 A, R = 0.15 at 1.60 A, and R = 0.14 at 1.60 A, respectively. Both the ring oxygen of the cyclic alpha-D-xylose and its C1 hydroxyl are within hydrogen bonding distance of NE2 of His-54 in the structure crystallized in the presence of D-xylose. Both the inhibitor, xylitol, and the extended form of the substrate, D-xylose, bind such that the C2 and C4 OH groups interact with one of the two divalent cations found in the active site and the C1 OH with the other cation. The remainder of the OH groups hydrogen bond with neighboring amino acid side chains. A detailed mechanism for D-xylose isomerase is proposed. Upon binding of cyclic alpha-D-xylose to xylose isomerase, His-54 acts as the catalytic base in a ring opening reaction. The ring opening step is followed by binding of D-xylose, involving two divalent cations, in an extended conformation. The isomerization of D-xylose to D-xylulose involves a metal-mediated 1,2-hydride shift. The final step in the mechanism is a ring closure to produce alpha-D-xylulose. The ring closing is the reverse of the ring opening step. This mechanism accounts for the majority of xylose isomerase's biochemical properties, including (1) the lack of solvent exchange between the 2-position of D-xylose and the 1-pro-R position of D-xylulose, (2) the chemical modification of histidine and lysine, (3) the pH vs. activity profile, and (4) the requirement for two divalent cations in the mechanism.  相似文献   
75.
Functional groups (FG) are an useful generalization to investigate environmental change effects on biotic communities. Assigning species to FGs is a contextual task and carries an arbitrary element, regardless of whether the grouping is obtained a priori or by sophisticated numerical methods. Using two grassland community case studies, we show that even simple FG allocation based on growth form, architecture and longevity (plants and mosses), or foraging characteristics (above-ground invertebrates) can be useful to increase our understanding of community processes. For example, the sensitivity of organisms to climate change increases with trophic rank and is higher in disturbed than in undisturbed communities. Complexity of interaction webs (in terms of web connectance), however, is larger in undisturbed than in disturbed communities. A significant and important relationship is likely to exist between anthropogenic disturbances, community complexity and the ecosystem effects of climate change. Trophic interactions may be disrupted much easier by climate changes in disturbed than in undisturbed communities where complexity may be buffering these effects.  相似文献   
76.
Lipid metabolism in Zellweger's syndrome   总被引:1,自引:0,他引:1  
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77.
Gillard  BK; Clement  RG; Marcus  DM 《Glycobiology》1998,8(9):885-890
There are several pathways for the incorporation of sugars into glycosphingolipids (GSL). Sugars can be added to ceramide that contains sphinganine (dihydrosphingosine) synthesized de novo (pathway 1), to ceramide synthesized from sphingoid bases produced by hydrolysis of sphingolipids (pathway 2), and into GSL recycling from the endosomal pathway through the Golgi (pathway 3). We reported previously the surprising observation that SW13 cells, a human adrenal carcinoma cell line, synthesize most of their GSL in pathway 2. We now present data on the synthesis of GSL in four additional cell lines. Approximately 90% of sugar incorporation took place in pathway 2, and 10% or less in pathway 1, in human foreskin fibroblasts and NB41A3 neuroblastoma cells. In contrast, approximately 50-90% of sugar incorporation took place in pathway 1 in C2C12 myoblasts. The C2C12 cells divide more rapidly and synthesize 10-14 times as much GSL as the other three cell lines. In C6 glioma cells, approximately 30% of sugar incorporation occurred in pathway 1 and 60% in pathway 2. There was no relation between the utilization of pathways for GSL and sphingomyelin synthesis in foreskin fibroblasts and C2C12 cells. In both cells pathways 1 and 2 each accounted for 50% of incorporation of choline into sphingomyelin. In five of the six cell lines that we have studied, most GSL synthesis takes place in pathway 2. We suggest that when the need for synthesis is relatively low, as in slowly dividing cells, GSL are synthesized predominantly from sphingoid bases salvaged from the hydrolytic pathway. When cells are dividing more rapidly, the need for increased synthesis is met by upregulating the de novo pathway.   相似文献   
78.
79.
1. A detailed study of cytochrome C oxidse activity with Keilin-Hartree particles and purified beef heart enzyme, at low ionic strength and low cytochrome C concentrations, showed biphasic kinetics with apparent Km1 = 5 x 10(-8) M, and apparent Km2 = 0.35 to 1.0 x 10(-6) M. Direct binding studies with purified oxidase, phospholipid-containing as well as phospholipid-depleted, demonstrated two sites of interaction of cytochrome c with the enzyme, with KD2 less than or equal to 10(-7) M, and KD2 = 10(-6) M. 2...  相似文献   
80.
Selective neuronal nitric oxide synthase (nNOS) inhibitors have therapeutic applications in the treatment of numerous neurodegenerative diseases. Here we report the synthesis and evaluation of a series of inhibitors designed to have increased cell membrane permeability via intramolecular hydrogen bonding. Their potencies were examined in both purified enzyme and cell-based assays; a comparison of these results demonstrates that two of the new inhibitors display significantly increased membrane permeability over previous analogs. NMR spectroscopy provides evidence of intramolecular hydrogen bonding under physiological conditions in two of the inhibitors. Crystal structures of the inhibitors in the nNOS active site confirm the predicted non-intramolecular hydrogen bonded binding mode. Intramolecular hydrogen bonding may be an effective approach for increasing cell membrane permeability without affecting target protein binding.  相似文献   
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