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J Nakamoto

Publications and source records attributed to J Nakamoto.

10 recordsLinked to original sources

Isolation and characterization of mini-Tn5Km2 insertion mutants of enterohemorrhagic Escherichia coli O157:H7 deficient in adherence to Caco-2 cells.

Adherence of enterohemorrhagic Escherichia coli (EHEC) to intestinal epithelium is essential for initiation of the infection. To identify genes involved in adherence, an EHEC O157:H7 strain (O157Sakai) was mutagenized by mini-Tn5Km2, where Km refers to kanamycin resistance, and 4,677 insertion mutants were screened for their ability to form microcolonies (MC) on Caco-2 cells. The less adherent mutants were divided into three groups: those with no adherent ability (designated as class 1 mutants, n = 10), those less adherent than the wild type (class 2 mutants, n = 16), and those unable to form MC but which adhered in a diffuse manner (class 3 mutants, n = 1). The sites of insertion in class 1 mutants were all found within genes of the locus for enterocyte effacement (LEE) thought to be required for type III protein secretion. Indeed, the class 1 mutants failed to secrete type III secreted proteins such as EspA and Tir into the culture medium. The insertions in class 2 mutants were outside the LEE, and all the mutants except one were able to secrete type III proteins into the culture medium. The class 3 mutant had the insertion in the tir gene in the LEE and was deficient in Tir and intimin expression, suggesting that in the absence of intimin-Tir, O157Sakai can still adhere to Caco-2 cells but in a diffused manner. This was confirmed by construction of a nonpolar eae (encoding intimin) mutant. Examination of the eae mutant together with O157Sakai and one of the class 1 mutants for the ability to form MC revealed that EHEC initially adhered diffusely at 1.5 h after infection. Following washing out of the nonadherent bacteria, while wild-type EHEC bacteria developed MC for another 2 to 3 h on Caco-2 cells, the eae mutant diffusely adhered throughout the infection without forming MC. MC with O157Sakai but not the diffusely adherent eae mutant could evoke F-actin condensation beneath the bacterium. Our results suggest that EHEC encodes additional adherence-associated loci and that the type III secreted proteins are involved in the initial diffuse adherence, while the intimin-Tir interaction is required for the subsequent development of MC.

Adhesins, Bacterial↗

DAX1 mutations map to putative structural domains in a deduced three-dimensional model.

The DAX1 protein is an orphan nuclear hormone receptor based on sequence similarity in the putative ligand-binding domain (LBD). DAX1 mutations result in X-linked adrenal hypoplasia congenita (AHC). Our objective was to identify DAX1 mutations in a series of families, to determine the types of mutations resulting in AHC and to locate single-amino-acid changes in a DAX1 structural model. The 14 new mutations identified among our 17 families with AHC brought the total number of families with AHC to 48 and the number of reported mutations to 42; 1 family showed gonadal mosaicism. These mutations included 23 frameshift, 12 nonsense, and six missense mutations and one single-codon deletion. We mapped the seven single-amino-acid changes to a homology model constructed by use of the three-dimensional crystal structures of the thyroid-hormone receptor and retinoid X receptor alpha. All single-amino-acid changes mapped to the C-terminal half of the DAX1 protein, in the conserved hydrophobic core of the putative LBD, and none affected residues expected to interact directly with a ligand. We conclude that most genetic alterations in DAX1 are frameshift or nonsense mutations and speculate that the codon deletion and missense mutations give insight into the structure and function of DAX1.

Adrenal Glands↗

Effects of mannitol in the prevention of evolving myocardial infarction.

The ability of hyperosmolar mannitol to salvage evolving myocardial infarction was studied in 50 open-chest dogs subjected to 3 hours occlusion of the left anterior descending coronary artery. In 28 dogs, 20% hyperosmolar mannitol was infused into the distal half of the infarcted portion after commencement of reperfusion, leaving the proximal half mannitol free. In the other 22 dogs, physiological saline was infused instead of mannitol. The wall thickness at the distal half of the infarcted portion was increased 2 hours after reperfusion in both the saline and the mannitol groups. After 2 hours reperfusion the chest was closed. Thirteen out of 28 dogs in the mannitol group and 12 out of 22 dogs in the saline group died over one week. Seven days later, myocardial samples were measured for myocardial water content and creatine phosphokinase activity (CPK). Myocardial water content was increased in the infarcted portion in both the saline and the mannitol groups. In the saline group, myocardial CPK was reduced markedly in the proximal half (54.8 +/- 7.8% at the inner layer and 53.1 +/- 4.7% at the outer layer). These depletions were even more marked in the distal half (47.9 +/- 5.8 and 48.3 +/- 3.3%). In the mannitol groups, although the CPK was similarly depressed in the proximal half (44.8 +/- 5.8 and 41.1 +/- 5.4%), the CPK depletion in the distal half was less (48.1 +/- 6.1 and 58.1 +/- 6.7%) than the proximal half, suggesting mannitol preserved CPK depletion in the infarcted portion. It was concluded that intracoronary infusion of mannitol after reperfusion may salvage the infarcted myocardium.

Animals↗