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At least 181 records · Page 10Linked to original sources

Ureteric hemorrhage in hemophilia with rapid healing.

A rapidly regressing ureteric hemorrhage, probably intramural, in a 14-year-old hemophiliac, is demonstrated by two closely sequential intravenous urograms. In the presence of hematuria, the intravenous urogrom outlines both the complications of hemophilia and their evolution, often directing therapy, and identifies concurrent disease.

Adolescent

Repeated elicitation of contact hypersensitivity induces a shift in cutaneous cytokine milieu from a T helper cell type 1 to a T helper cell type 2 profile.

We previously demonstrated that repeated application of 2,4,6-trinitro-1-chlorobenzene resulted in a site-restricted shift in the time course of Ag-specific hypersensitivity responses from a typical delayed-type to an early-type response. Here we demonstrated that the cutaneous microenvironment at the time of Ag presentation to T cells in the elicitation, but not the induction, phase of contact hypersensitivity is responsible for the shift. To investigate the differences in the cutaneous cytokine milieu between the acute and chronic phases of contact hypersensitivity, sequential cytokine dynamics after 2,4,6-trinitro-1-chlorobenzene application were assessed in the acute vs chronic lesions. In the acute lesions, increased mRNA levels for IFN-gamma and IL-2 were rapidly detected at 1 h and remained elevated at 12 h, while mRNA expression for IL-4 and IL-10 was minimally up-regulated between approximately 12 and 24 h. In chronic lesions, high levels of constitutive expression of IL-4 mRNA were observed and IL-10 mRNA was dramatically up-regulated at 1 approximately 3 h in an Ag-specific fashion, whereas the expression of Th1-type cytokines was markedly reduced. Increased mRNA levels for Th2-type cytokines in the chronic lesions was also reflected at the protein level. These results indicate that repeated elicitation with Ag alters the balance of cytokines released locally, with a shift toward Th2-dominated responses, which would represent the natural evolution processes directed toward reducing a more deleterious Th1 response.

Administration, Cutaneous

Directional mutation pressure, mutator mutations, and dynamics of molecular evolution.

Using a general form of the directional mutation theory, this paper analyzes the effect of mutations in mutator genes on the G+C content of DNA, the frequency of substitution mutations, and evolutionary changes (cumulative mutations) under various degrees of selective constraints. Directional mutation theory predicts that when the mutational bias between A/T and G/C nucleotide pairs is equilibrated with the base composition of a neutral set of DNA nucleotides, the mutation frequency per gene will be much lower than the frequency immediately after the mutator mutation takes place. This prediction explains the wide variation of the DNA G+C content among unicellular organisms and possibly also the wide intragenomic heterogeneity of third codon positions for the genes of multicellular eukaryotes. The present analyses lead to several predictions that are not consistent with a number of the frequently held assumptions in the field of molecular evolution, including belief in a constant rate of evolution, symmetric branching of phylogenetic trees, the generality of higher mutation frequency for neutral sets of nucleotides, the notion that mutator mutations are generally deleterious because of their high mutation rates, and teleological explanations of DNA base composition.

Animals

Directional fixation of mutations in vertebrate evolution.

We have made pairwise comparisons between the coding sequences of 21 genes from cold-blooded vertebrates and 41 homologous sequences from warm-blooded vertebrates. In the case of 12 genes, GC levels were higher, especially in third codon positions, in warm-blooded vertebrates compared to cold-blooded vertebrates. Six genes showed no remarkable difference in GC level and three showed a lower level. In the first case, higher GC levels appear to be due to a directional fixation of mutations, presumably under the influence of body temperature (see Bernardi and Bernardi 1986b). These GC-richer genes of warm-blooded vertebrates were located, in all cases studied, in isochores higher in GC than those comprising the homologous genes of cold-blooded vertebrates. In the third case, increases appear to be due to a limited formation of GC-rich isochores which took place in some cold-blooded vertebrates after the divergence of warm-blooded vertebrates. The directional changes in the GC content of coding sequences and the evolutionary conservation of both increased and unchanged GC levels are in keeping with the existence of compositional constraints on the genome.

Animals

Turnover of mouse intestinal brush border membrane proteins and enzymes in organ culture. A direct evaluation from studies on the evolution of enzyme activities during the culture.

The turnover of mouse intestinal brush border membrane enzymes has been studied by kinetic analysis of the evolution of enzyme activities during organ culture. By comparing the results obtained in these studies with the predictions from a mathematical model of enzyme synthesis and degradation in organ cultures, it has been possible to reach the following conclusions: (1) There is no degradation of brush border membrane enzymes during culture and the rate of synthesis of each enzyme is directly measurable from the kinetics of total enzyme accumulation (tissue + media). (2) Brush border membrane enzymes are released in culture media by two complementary processes. The first one involves a differential solubilization of enzymes but its exact nature cannot be exactly stated. The second one involves a microvesiculation of brush border membranes, the importance of which in vivo is seen in the possible conciliation between urinary membrane synthesis and heterogeneous turnover of membrane components.

Alkaline Phosphatase

[Evolution of the locomotor-sensory systems].

Among directing physical factors of evolution of the locomotor-sensory system (LSS) gravitation, photons energy, oscillations of water and air media, ligands play the main role. At the molecular level the LSS elements are formed on the base of synthesizing genes that bring about development of protein molecules of tubulin and specific protonizing proteins in composition of the locomotor apparatus in Procariota flagellas. Tubulin and dinein with ATPh-ase activity are included in the flagella composition of LSS in Eukaryota, actin and miozin--with a high ATPh-ase activity--in composition of LSS myofilaments in ameboid Eukaryota and locomotor musculature in Metazoa. Simultaneously, in Pro- and Eukaryota in the same cell sensory molecules of rhodopsin, mechanoreceptors, chemoreceptors and so on can be synthesized. As a rule they localize in the flagellar membranes. In Metazoa single receptory flagellar cells are differentiated; they realize conservatively some receptive molecules that are already prepared by their ancessors--Eukaryota. The molecules also preserve their localization in the flagellar membranes. In Metazoa two types of locomotion take place according to the function of regulatory genes: initial flagellar and muscular definitive apparatus. Both types of locomotion are directed and regulated by the organs of sense and CNS; they form a strict spatial model of fixated synaptic connections of LSS. For the first time it was discovered in Ctenophora. This model, despite a complicated organization, is conservatively preserved in its general form in all Proto- and Denterostomia.

Animals

A theory of evolution above the species level.

Gradual evolutionary change by natural selection operates so slowly within established species that it cannot account for the major features of evolution. Evolutionary change tends to be concentrated within speciation events. The direction of transpecific evolution is determined by the process of species selection, which is analogous to natural selection but acts upon species within higher taxa rather than upon individuals within populations. Species selection operates on variation provided by the largely random process of speciation and favors species that speciate at high rates or survive for long periods and therefore tend to leave many daughter species. Rates of speciation can be estimated for living taxa by means of the equation for exponential increase, and are clearly higher for mammals than for bivalve mollusks.

Adaptation, Biological

Site-directed mutagenesis study on the roles of evolutionally conserved aspartic acid residues in human glutathione S-transferase P1-1.

The evolutionally conserved aspartyl residues (Asp57, Asp98 and Asp152) in human glutathione S-transferase P1-1 were replaced with alanine by site-directed mutagenesis to obtain the mutants (D57A, D98A and D152A). The replacement of Asp98 with alanine resulted in a decrease of the affinity for S-hexyl-GSH-agarose, a 5.5-fold increase of the KmGSH and a 2.9-fold increase of the I50 of S-hexyl-GSH for GSH-CDNB conjugation. Asp98 seems to participate in the binding of GSH through hydrogen bonding with the alpha-carboxylate of the gamma-glutamyl residue of GSH. The kcat of D98A was 2.6-fold smaller than that of the wild-type, and the pKa of the thiol group of GSH bound in D98A was approximately 0.8 pK units higher than those in the wild-type. Asp98 also seems to contribute to the activation of GSH to some extent. On the other hand, most of the kinetic parameters of D57A and D152A were similar to those of the wild-type. However, the thermostabilities of D57A and D152A were significantly lower than that of the wild-type. Asp57 and Asp152 seem to be important for maintaining the proper conformation of the enzyme.

Amino Acid Sequence

Is there conscious choice in directed mutation, phenocopies, and related phenomena? An answer based on quantum measurement theory.

In a previous article (Goswami, 1997), it was suggested that an application of quantum measurement theory under the auspices of a monistic idealist ontology (that consciousness is the ground of being) can solve many difficult problems of neo-Darwinism, e.g., alternating rapid creativity and homeostasis observed in evolution and the directionality, origin, and nature of life. In this article, we propose an epigenetic quantum mechanism to explain the connection of developmental processes and evolution, as has been evidenced in such controversial phenomena as directed mutation and phenocopies.

Animals

[Reverse transcriptase and its biological role].

Elements with open-reading translation frames homologous to retroviral RNA-dependent DNA polymerases (reverse transcriptases) were found in eukaryotic cell genomes. Expression of endogenous reverse transcriptases in prokaryotic and eukaryotic cells is confirmed directly and indirectly. Evolution and function of reverse transcriptases are analyzed, and their phylogenetic and ontogenetic role is evaluated.

Biological Evolution

Evolution of major histocompatibility complex class II allelic diversity: direct descent in mice and humans.

The high degree of polymorphism seen at major histocompatibility complex (MHC) class II loci is a feature unique to the MHC. Most of the beta-chain polymorphism is localized in "hypervariable" regions (HVRs). HVR amino acid sequence similarity between distantly related species has recently been found. We have employed a Monte-Carlo statistic to show that shared HVR polymorphism between beta-chain genes of humans and mice represents direct descent of ancestral sequences rather than convergent evolution. Furthermore, half the sequence polymorphism seen in class II beta-chain genes of mice persists in evolution and is encoded by the same DNA sequence in humans. No evidence for increased mutation rate within the HVR was found. We postulate that the HVR can be considered the genetic unit of recombination, with selection for HVR sequences and combinations of HVRs constrained by functional considerations.

Alleles