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131.
Scism JL Laska DA Horn JW Gimple JL Pratt SE Shepard RL Dantzig AH Wrighton SA 《In vitro cellular & developmental biology. Animal》1999,35(10):580-592
Summary Cocultures of human umbilical vein endothelial cells (ECV304) and rat glioma cells (C6) from two commercial sources, American
Type Culture Collection and European Collection of Animal Cell Cultures, were evaluated as an in vitro model for the blood-brain
barrier. Monolayers of endothelial cells grown in the presence or absence of glial cells were examined for transendothelial
electrical resistance, sucrose permeability, morphology, multidrug resistance-associated protein expression, and P-glycoprotein
expression and function. Coculture of glial cells with endothelial cells increased electrical resistance and decreased sucrose
permeability across European endothelial cell monolayers, but had no effect on American endothelial cells. Coculture of European
glial cells with endothelial cells caused cell flattening and decreased cell stacking with both European and American endothelial
cells. No P-glycoprotein or multidrug resistance-associated protein was immunodetected in endothelial cells grown in glial
cell-conditioned medium. Functional P-glycoprotein was demonstrated in American endothelial cells selected in vinblastine-containing
medium over eight passages, but these cells did not form a tight endothelium. In conclusion, while European glial cells confer
blood-brain barrier-like morphology and barrier integrity to European endothelial cells in coculture, the European endothelial-glial
cell coculture model does not express P-glycoprotein, normally found at the blood-brain barrier. Further, the response of
endothelial cells to glial factors was dependent on cell source, implying heterogeneity among cell populations. On the basis
of these observations, the umbilical vein endothelial cell-glial cell coculture model does not appear to be a viable model
for predicting blood-brain barrier penetration of drug molecules. 相似文献
132.
Staron RS Kraemer WJ Hikida RS Fry AC Murray JD Campos GE 《Histochemistry and cell biology》1999,111(2):117-123
The limb and trunk muscles of adult rats express four myosin heavy chain (MHC) isoforms, one slow (MHCI) and three fast (MHCIIa,
MHCIId, and MHCIIb). The distribution of these isoforms correlates with fiber types delineated using myofibrillar actomyosin
adenosine triphosphatase (mATPase) histochemistry. For example, type I fibers express MHCI and fiber types IIA, IID, and IIB
express MHCIIa, MHCIId, and MHCIIb, respectively. Fibers containing only one MHC isoform have been termed ”pure” fibers. Recent
evidence suggests that a population of ”hybrid” fibers exist in rat skeletal muscle which contain two MHC isoforms. The purpose
of the present investigation was to document the entire range of histochemically defined ”pure” and ”hybrid” fiber types in
untreated muscles of the young adult Fisher 344 rat hindlimb. The selected hindlimb muscles (soleus, tibialis anterior, extensor
digitorum longus, and gastrocnemius muscles) were removed from 12 male rats and analyzed for muscle fiber type distribution,
cross-sectional area, and MHC content. Care was taken to delineate eight fiber types (I, IC, IIC, IIA, IIAD, IID, IIDB, and
IIB) using refined histochemical techniques. Hybrid fibers were found to make up a considerable portion of the muscles examined
(a range of 8.8–17.8% of the total). The deep red portion of the gastrocnemius muscle contained the largest number of hybrid
fibers, most of which were the fast types IIAD (8.5±2.8%) and IIDB (5.2±2.3%). In conclusion, hybrid fibers make up a considerable
portion of normal rat limb musculature and are an important population that should not be ignored.
Accepted: 15 October 1998 相似文献
133.
Proapoptotic BH3-only Bcl-2 family member Bik/Blk/Nbk is expressed in hemopoietic and endothelial cells but is redundant for their programmed death 下载免费PDF全文
Coultas L Bouillet P Stanley EG Brodnicki TC Adams JM Strasser A 《Molecular and cellular biology》2004,24(4):1570-1581
The BH3-only members of the Bcl-2 protein family are essential for initiation of programmed cell death and stress-induced apoptosis. We have determined the expression pattern in mice of the BH3-only protein Bik, also called Blk or Nbk, and examined its physiological function by gene targeting. We found that Bik is expressed widely in the hematopoietic compartment and in endothelial cells of the venous but not arterial lineages. Nevertheless, its loss did not increase the numbers of such cells in mice or protect hematopoietic cells in vitro from apoptosis induced by cytokine withdrawal or diverse other cytotoxic stimuli. Moreover, whereas loss of the BH3-only protein Bim rescued mice lacking the prosurvival protein Bcl-2 from fatal polycystic kidney disease and lymphopenia, loss of Bik did not. These results indicate that any function of Bik in programmed cell death and stress-induced apoptosis must overlap that of other BH3-only proteins. 相似文献
134.
Nishi H Nakada T Kyo S Inoue M Shay JW Isaka K 《Molecular and cellular biology》2004,24(13):6076-6083
Hypoxia occurs during the development of the placenta in the first trimester and correlates with both trophoblast differentiation and the induction of telomerase activity through hTERT expression. We sought to determine the mechanism of regulation of hTERT expression during hypoxia. We show that hypoxia-inducible factor 1alpha (HIF-1alpha) and hTERT expression in the human placenta decrease with gestational age and that these are overexpressed in preeclamptic placenta, a major complication of pregnancy. Hypoxia not only transactivates the hTERT promoter activity but also enhances endogenous hTERT expression. The hTERT promoter region between -165 and +51 contains two HIF-1 consensus motifs, and in vitro reporter assays show that these are essential for hTERT transactivation by HIF-1. Introduction of an antisense oligonucleotide for HIF-1 diminishes hTERT expression during hypoxia, indicating that upregulation of hTERT by hypoxia is directly mediated through HIF-1. Our results provide persuasive evidence that the regulation of hTERT promoter activity by HIF-1 represents a mechanism for trophoblast growth during hypoxia and suggests that this may be a generalized response to hypoxia in various human disorders including resistance to cancer therapeutics by upregulating telomerase. 相似文献
135.
New synaptic bouton formation is disrupted by misregulation of microtubule stability in aPKC mutants
The Baz/Par-3-Par-6-aPKC complex is an evolutionarily conserved cassette critical for the development of polarity in epithelial cells, neuroblasts, and oocytes. aPKC is also implicated in long-term synaptic plasticity in mammals and the persistence of memory in flies, suggesting a synaptic function for this cassette. Here we show that at Drosophila glutamatergic synapses, aPKC controls the formation and structure of synapses by regulating microtubule (MT) dynamics. At the presynapse, aPKC regulates the stability of MTs by promoting the association of the MAP1Brelated protein Futsch to MTs. At the postsynapse, aPKC regulates the synaptic cytoskeleton by controlling the extent of Actin-rich and MT-rich areas. In addition, we show that Baz and Par-6 are also expressed at synapses and that their synaptic localization depends on aPKC activity. Our findings establish a novel role for this complex during synapse development and provide a cellular context for understanding the role of aPKC in synaptic plasticity and memory. 相似文献
136.
Dagkessamanskaia A Moscoso M Hénard V Guiral S Overweg K Reuter M Martin B Wells J Claverys JP 《Molecular microbiology》2004,51(4):1071-1086
137.
Target discrimination by surface-immobilized molecular beacons designed to detect Francisella tularensis 总被引:3,自引:0,他引:3
Ramachandran A Flinchbaugh J Ayoubi P Olah GA Malayer JR 《Biosensors & bioelectronics》2004,19(7):727-736
A molecular beacon (MB) array was designed based on unique regions of the 16S rRNA of the bacterium Francisella tularensis. Nucleic acid molecular beacons undergo a spontaneous fluorogenic conformational change when they hybridize to specific complementary targets. The array was printed on aldehyde glass or hydrogel slides and evaluated for functioning in presence of complementary oligonucleotide sequences, single-nucleotide mismatch sequences and multiple nucleotide mismatch sequences. Discriminating true target from mismatched targets was found to be dependent on type, number, and location of mismatches within the beacon (i.e. located in the stem or loop regions). Optimal conditions for molecular beacon deposition, and target hybridization were determined for oligonucleotide target mismatch discrimination. The beacon array was stable upon recharging by exposure to an alkaline solution, and repeatedly used. In addition, performance of the beacon array biosensor was compared with molecular beacons in homogeneous solution. 相似文献
138.
Conservation of fragmented small populations: endemic species persistence on California's smallest channel island 总被引:1,自引:1,他引:0
We examined resilience to extreme reduction of habitat, and long-term and long-distance isolation for an endemic species using California's Santa Barbara Island as a natural model. The island is smaller than 260ha, has been isolated by 40km of ocean from the nearest other island for more than 10,000 years and was severely impacted by human activities and feral browsers during at least the past 90 years. Less than 0.2km2 of native plant cover remains, yet seven apparently endemic plants and animals persist, including a moth, Argyrotaenia isolatissima (Tortricidae). Using mitochondrial DNA sequence we examined the levels of genetic divergence between the moth and its closest relatives on the other Channel Islands and the California mainland. A. isolatissima has 15bp differences, including one non-synonymous substitution, from the most closely related taxon, on San Nicolas Island. Both parsimony and likelihood-based molecular systematic analyses confirm the evolutionary independence of A. isolatissima and indicate that portions of an endemic flora and fauna may persist in small fragments, despite long-term isolation and disturbance. Habitat conservation planning may underestimate the value of very small, temporally and spatially isolated fragments of native habitat not only to maintain, but also to generate endemic biodiversity. 相似文献
139.
呼吸道感受器在机体对肺部物理和化学环境变化作出反应时起到重要作用,它们引起的反射具有调节或保护作用,或产生病理效应。基于电生理研究,可将呼吸道感受器分为四类,但它们的组织结构不详。由于对感受器形态的认识不足,阻碍了对其生理功能的理解。近来,我们采用共聚焦显微术与免疫组织化学方法(用钠钾ATP酶作为标记),首次高清晰度地展示了呼吸感受器结构。本文采用这种新方法在家兔中进行了系统观察。结果显示,各级气道通均有多种不同的感受器结构。大气道中的结构往往比小气道中的复杂,虽然它们的大小、所在部位与走向不尽相同,但都有多个终端末梢。有些感受器埋置在气道平滑肌中,其结构便于感受对气道的机械性刺激:有些覆盖在气道上皮的表面,其形态适合于感受通过气道的刺激性物质;另一些则位于气道粘膜下,在上皮与平滑肌之间。有些传入神经轴突可支配多个感受器结构。据此,传入单纤维中记录到的电活动是来自一个感觉单位。后者可以由多个感受器组成。除了感受器之外,我们还观察到气道内神经节,它们与感受神经的轴突密切相关。本文证实气道内存在不同形态结构的感受器,并探讨了其生理分类。 相似文献
140.
His-404 and His-405 are essential for enzyme catalytic activities of a bacterial indole-3-acetyl-L-aspartic acid hydrolase 总被引:1,自引:0,他引:1
Bacterial indole-3-acetyl-l-aspartic acid (IAA-Asp) hydrolase has shown very high substrate specificity compared with similar IAA-amino acid hydrolase enzymes found in Arabidopsis thaliana. The IAA-Asp hydrolase also exhibits, relative to the Arabidopsis thaliana-derived enzymes, a very high Vmax (fast reaction rate) and a higher Km (lower substrate affinity). These two characteristics indicate that there are fundamental differences in the catalytic activity between this bacterial enzyme and the Arabidopsis enzymes. By employing a computer simulation approach, a catalytic residue, His-385, from a non-sequence-related zinc-dependent exopeptidase of Pseudomonas was found to structurally match His-405 of IAA-Asp hydrolase. The His-405 residue is conserved in all related sequences of bacteria and Arabidopsis. Point mutation experiments of this His-405 to seven different amino acids resulted in complete elimination of enzyme activity. However, point mutation on the neighboring His-404 to eight other residues resulted in reduction, to various degrees, of enzyme activity. Amino acid substitutions for His-404 also showed that this residue influenced the minor activity of the IAA-Asp hydrolase for the substrates IAA-Gly, IAA-Ala, IAA-Ser, IAA-Glu and IAA-Asn. These results show the value and potential of structural modeling for predicting target residues for further study and for directing bioengineering of enzyme structure and function. 相似文献