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641.
Patton D O'Reilly M Vanner S 《American journal of physiology. Gastrointestinal and liver physiology》2005,289(5):G785-G790
The aim was to determine the role CGRP and/or tachykinins released from sensory neural mechanisms in enteric neural vasodilator pathways. These pathways project through the myenteric plexus to submucosal vasodilator neurons. Submucosal arterioles were exposed in the distal portion of an in vitro combined submucosal-myenteric guinea pig ileal preparation, and dilation was monitored with videomicroscopy. Vasodilator neural reflexes were activated by gently stroking the mucosa with a fine brush or by distending a balloon placed beneath the flat-sheet preparation in the proximal portion. Dilations evoked by mucosal stroking were inhibited 64% by the CGRP 8-37 and 37% by NK3 (SR 142801) antagonists. When the two antagonists were combined with hexamethonium, only a small vasodilation persisted. Balloon distension-evoked vasodilations were inhibited by NK3 antagonists (66%) but were not altered by CGRP 8-37. In preparations in which myenteric descending interneurons were directly activated by electrical stimulation, combined application of CGRP 8-37 and the NK antagonists had no effect. Stimulation of capsaicin sensitive nerves in the myenteric plexus did not activate these vasodilator reflexes. These findings suggest that mucosal-activated reflexes result from the release of CGRP and tachykinins from enteric sensory neurons. Distension-evoked responses were significantly blocked by NK3 antagonists, suggesting that stretch activation of myenteric sensory neurons release tachykinins that activate NK3 receptors on myenteric vasodilator pathways. 相似文献
642.
Hypoxia-inducible factor prolyl 4-hydroxylase inhibition. A target for neuroprotection in the central nervous system 总被引:6,自引:0,他引:6
643.
Patton JR Bykhovskaya Y Mengesha E Bertolotto C Fischel-Ghodsian N 《The Journal of biological chemistry》2005,280(20):19823-19828
A missense mutation in the PUS1 gene affecting a highly conserved amino acid has been associated with mitochondrial myopathy and sideroblastic anemia (MLASA), a rare autosomal recessive oxidative phosphorylation disorder. The PUS1 gene encodes the enzyme pseudouridine synthase 1 (Pus1p) that is known to pseudouridylate tRNAs in other species. Total RNA was isolated from lymphoblastoid cell lines established from patients, parents, unaffected siblings, and unrelated controls, and the tRNAs were assayed for the presence of pseudouridine (Psi) at the expected positions. Mitochondrial and cytoplasmic tRNAs from MLASA patients are lacking modification at sites normally modified by Pus1p, whereas tRNAs from controls, unaffected siblings, or parents all have Psi at these positions. In addition, there was no Pus1p activity in an extract made from a cell line derived from a patient with MLASA. Immunohistochemical staining of Pus1p in cell lines showed nuclear, cytoplasmic, and mitochondrial distribution of the protein, and there is no difference in staining between patients and unaffected family members. MLASA is thus associated with absent or greatly reduced tRNA pseudouridylation at specific sites, implicating this pathway in its molecular pathogenesis. 相似文献
644.
Rotavirus glycoprotein NSP4 is a modulator of viral transcription in the infected cell 总被引:2,自引:0,他引:2
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Silvestri LS Tortorici MA Vasquez-Del Carpio R Patton JT 《Journal of virology》2005,79(24):15165-15174
645.
646.
RNA-binding activity of the rotavirus phosphoprotein NSP5 includes affinity for double-stranded RNA
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Phosphoprotein NSP5 is a component of replication intermediates that catalyze the synthesis of the segmented double-stranded RNA (dsRNA) rotavirus genome. To study the role of the protein in viral replication, His-tagged NSP5 was expressed in bacteria and purified by affinity chromatography. In vitro phosphorylation assays showed that NSP5 alone contains minimal autokinase activity but undergoes hyperphosphorylation when combined with the NTPase and helix-destabilizing protein NSP2. Hence, NSP2 mediates the hyperphosphorylation of NSP5 in the absence of other viral or cellular proteins. RNA-binding assays demonstrated that NSP5 has unique nonspecific RNA-binding activity, recognizing single-stranded RNA and dsRNA with similar affinities. The possible functions of the RNA-binding activities of NSP5 are to cooperate with NSP2 in the destabilization of RNA secondary structures and in the packaging of RNA and/or to prevent the interferon-induced dsRNA-dependent activation of the protein kinase PKR. 相似文献
647.
Liu Cm CM McElver J Tzafrir I Joosen R Wittich P Patton D Van Lammeren AA Meinke D 《The Plant journal : for cell and molecular biology》2002,29(4):405-415
The titan (ttn) mutants of Arabidopsis exhibit striking alterations in chromosome dynamics and cell division during seed development. Endosperm defects include aberrant mitoses and giant polyploid nuclei. Mutant embryos differ in cell size, morphology and viability, depending on the locus involved. Here we demonstrate that three TTN genes encode chromosome scaffold proteins of the condensin (SMC2) and cohesin (SMC1 and SMC3) classes. These proteins have been studied extensively in yeast and animal systems, where they modulate chromosome condensation, chromatid separation, and dosage compensation. Arabidopsis contains single copies of SMC1 and SMC3 cohesins. We used forward genetics to identify duplicate T-DNA insertions in each gene. These mutants (ttn7 and ttn8) have similar titan phenotypes: giant endosperm nuclei and arrested embryos with a few small cells. A single SMC2 knockout (ttn3) was identified and confirmed by molecular complementation. The weak embryo phenotype observed in this mutant may result from expression of a related gene (AtSMC2) with overlapping functions. Further analysis of titan mutants and the SMC gene family in Arabidopsis should provide clues to chromosome mechanics in plants and insights into the regulation of nuclear activity during endosperm development. 相似文献
648.
Patton S 《The Journal of parasitology》2003,89(4):647-651
During the past several weeks, I, like many of my predecessors, have read many speeches previously delivered at the annual meeting of the American Society of Parasitologists (ASP). These are wonderful, exciting papers, and I recommend them to you. The history of our Society and much of parasitological research and philosophy are contained in these speeches. An understanding of parasitology and specifically of the ASP in the 21st century necessitates an understanding of our roots. Just as proteomics, genomics, DNA, and Mendel are a continuum, so is our progression as a science and as a Society. This thought is not original with me. Several presidents have discussed this point in detail: Eloise Cram in 1956, "Stepping Stones in the History of the American Society of Parasitologists" (Cram, 1956); Martin Ulmer in 1978, "What's Past is Prologue" (Ulmer, 1978); Harry Hoogstraal in 1984, "ASP: Its Historic Role and Modern Opportunities" (Hoogstraal, 1985); and Mike Kemp in 1988, "Parasitology a Degenerate Discipline, Populated by Degenerate Scientists, Studying Degenerate Organisms?" (Kemp, 1989). 相似文献
649.
Tzafrir I Dickerman A Brazhnik O Nguyen Q McElver J Frye C Patton D Meinke D 《Nucleic acids research》2003,31(1):90-93
The SeedGenes database (http://www.seedgenes.org) presents molecular and phenotypic information on essential, non-redundant genes of Arabidopsis that give a seed phenotype when disrupted by mutation. Experimental details are synthesized for efficient use by the community and organized into two major sections in the database, one dealing with genes and the other with mutant alleles. The database can be queried for detailed information on a single gene to create a SeedGenes Profile. Queries can also generate lists of genes or mutants that fit specified criteria. The long-term goal is to establish a complete collection of Arabidopsis genes that give a knockout phenotype. This information is needed to focus attention on genes with important cellular functions in a model plant and to assess from a genetic perspective the extent of functional redundancy in the Arabidopsis genome. 相似文献
650.