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Rates and patterns of chloroplast DNA evolution.

The chloroplast genome (cpDNA) of plants has been a focus of research in plant molecular evolution and systematics. Several features of this genome have facilitated molecular evolutionary analyses. First, the genome is small and constitutes an abundant component of cellular DNA. Second, the chloroplast genome has been extensively characterized at the molecular level providing the basic information to support comparative evolutionary research. And third, rates of nucleotide substitution are relatively slow and therefore provide the appropriate window of resolution to study plant phylogeny at deep levels of evolution. Despite a conservative rate of evolution and a relatively stable gene content, comparative molecular analyses reveal complex patterns of mutational changes. Non-coding regions of cpDNA diverge through insertion/deletion changes that are sometimes site dependent. Coding genes exhibit different patterns of codon bias that appear to violate the equilibrium assumptions of some evolutionary models. Rates of molecular change often vary among plant families and orders in a manner that violates the assumption of a simple molecular clock. Finally, protein-coding genes exhibit patterns of amino acid change that appear to depend on protein structure, and these patterns may reveal subtle aspects of structure/function relationships. Only comparative studies of molecular sequences have the resolution to reveal this underlying complexity. A complete description of the complexity of molecular change is essential to a full understanding of the mechanisms of evolutionary change and in the formulation of realistic models of mutational processes.

Biological Evolution↗

Beta-thalassemia syndromes.

In summary, the beta-thalassemias are due to defects in or around the structural beta-globin gene. In some Indian patients, there is deletion of sequence at the 3' end of the beta-globin gene. Most commonly, single nucleotide mutations cause beta(+)- and beta(0) -thalassemia. More than 30 such mutations have been identified. Defects in the promoter region 5' to the gene as far 5' as -87 and closer to the gene at -27 and -28 in the ATA sequence can cause beta (+)-thalassemia. Single nucleotide changes in coding regions leading to termination or nonsense codons commonly cause beta (0)-thalassemia. In addition, beta(0)-thalassemia can be due to single nucleotide changes in the invariant GT at the 5' splice junction in IVS 1 and 2 and in the AG at the 3' end of IVS 2. Additionally, single nucleotide mutations can occur within IVS that result in both beta(+)- and beta(0)-thalassemia. New splice sites are usually the result of these single nucleotide mutations, and they lead to new, abnormal splicing patterns. In some instances, beta (+)-thalassemia results when a new splice signal created within IVS is still associated with some continued normal splicing as well as with abnormal splicing. The abnormal splicing leads to abnormal mRNA, while the normal splicing leads to some normal mRNA and the beta (+)-pheno-single In other cases, such as with the defect as position 705 of IVS 2, the single nucleotide change within the IVS allows only abnormal mRNA splicing, and it results in beta (0)-thalassemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

A history of nursing's code of ethics.

This article has focused on the history of the code of ethics for nurses. The changes in the code intertwine with nursing's journey toward professionalism and reflect changes in nursing, society and health care. Over the years, however, the code has remained relatively stable. Six of the statements can be traced back to the 1926 code and five others to the revision of the code in 1960. The code of ethics has provided guidance for the profession, and has helped determine nursing's position as a profession in society.

Codes of Ethics↗

Selection at the amino acid level can influence synonymous codon usage: implications for the study of codon adaptation in plastid genes.

A previously employed method that uses the composition of noncoding DNA as the basis of a test for selection between synonymous codons in plastid genes is reevaluated. The test requires the assumption that in the absence of selective differences between synonymous codons the composition of silent sites in coding sequences will match the composition of noncoding sites. It is demonstrated here that this assumption is not necessarily true and, more generally, that using compositional properties to draw inferences about selection on silent changes in coding sequences is much more problematic than commonly assumed. This is so because selection on nonsynonymous changes can influence the composition of synonymous sites (i.e., codon usage) in a complex manner, meaning that the composition biases of different silent sites, including neutral noncoding DNA, are not comparable. These findings also draw into question the commonly utilized method of investigating how selection to increase translation accuracy influences codon usage. The work then focuses on implications for studies that assess codon adaptation, which is selection on codon usage to enhance translation rate, in plastid genes. A new test that does not require the use of noncoding DNA is proposed and applied. The results of this test suggest that far fewer plastid genes display codon adaptation than previously thought.

Algorithms↗

Overview of cancer epigenetics.

Epigenetic mechanisms including DNA and histone modifications result in silencing of genes without changing the coding sequence of the gene. Even though these events are heritable, they are potentially reversible, thus opening up opportunities for therapeutic intervention. The importance of epigenetic changes in human cancer is only now being recognized in the medical community. A series of discoveries over the last four decades has thrust epigenetics into the forefront of new drug discoveries. Three systems--DNA methylation, RNA-associated silencing, and histone modification--are used to initiate and sustain epigenetic silencing. Current knowledge suggests that agents that intervene in this process by "turning back on" silenced genes may represent a significant advancement in treating many forms of cancer. In addition, changed patterns of methylation can be detected with a high degree of sensitivity thus providing clinicians with prognostic information.

DNA Methylation↗

Complementary DNA clones of chicken proto-oncogene c-ets: sequence divergence from the viral oncogene v-ets.

The avian acute leukemia virus E26 induces erythroblastosis and myeloblastosis in chickens. The oncogene of this virus includes sequences derived from the cellular gene designated c-ets, which is normally expressed in lymphoid cells and whose product is a protein of apparent molecular weight ca. 54,000 daltons. Complementary DNA clones representing the major transcript of the chicken c-ets proto-oncogene were isolated from a spleen cell library. Sequence analysis of the cDNA revealed that it contains an open reading frame encoding a polypeptide of 441 amino acids with a molecular weight of 49,932 daltons. This open reading frame can be transcribed and translated in vitro into a 50 kd protein that is specifically immunoprecipitated with antiserum to the v-ets oncogene product. Within the central region of homology between c-ets and v-ets, there are only 5 nucleotide substitutions resulting in 4 amino acid changes. However, coding sequences at the 5' and 3' ends of the v-ets oncogene and the chicken c-ets cDNA differ from one another. These changes may be responsible for the differential functions of c-ets and v-ets in cells of different hematopoietic lineages and may account for the pathogenic properties of the v-ets oncogene.

Amino Acid Sequence↗

Expression of a laccase cDNA from Trametes sp. AH28-2 in Pichia pastoris and mutagenesis of transformants by nitrogen ion implantation.

A laccase cDNA from Trametes sp. AH28-2 was expressed in Pichia pastoris, with the highest expression level of 4.0 mg L-1 (1360 U mg-1). The apparent Km (24.6 microM) for ABTS (2,2'-azinobis [3-ethylbenzothia-zoline-6-sulfonic acid]) and the carbohydrate content of the recombinant laccase A (rLacA) are approximately identical to those of the native LacA (nLacA). However, the two enzymes differed in the pH optimum when both ABTS and guaiacol served as substrates. The optimum pH for enzyme stability is 5.5 for rLacA. Thermal stability was also investigated. The mutagenesis of rLacA utilizing low-energy nitrogen ion implantation resulted in the isolation of a yeast clone that produced 7.7 mg L-1 (1085 U mg-1) of laccase, 92.5% more than the nonirradiated control (4.0 mg L-1). Compared with rLacA, the mutant LacA (mLacA) with five amino-acid residue changes in the coding sequence showed a slight change in its catalytic ability but superior thermal stability.

Cloning, Molecular↗

Genomic analysis of vaccine-derived poliovirus strains in stool specimens by combination of full-length PCR and oligonucleotide microarray hybridization.

Sabin strains of poliovirus used in the manufacture of oral poliovirus vaccine (OPV) are prone to genetic variations that occur during growth in cell cultures and the organisms of vaccine recipients. Such derivative viruses often have increased neurovirulence and transmissibility, and in some cases they can reestablish chains of transmission in human populations. Monitoring for vaccine-derived polioviruses is an important part of the worldwide campaign to eradicate poliomyelitis. Analysis of vaccine-derived polioviruses requires, as a first step, their isolation in cell cultures, which takes significant time and may yield viral stocks that are not fully representative of the strains present in the original sample. Here we demonstrate that full-length viral cDNA can be PCR amplified directly from stool samples and immediately subjected to genomic analysis by oligonucleotide microarray hybridization and nucleotide sequencing. Most fecal samples from healthy children who received OPV were found to contain variants of Sabin vaccine viruses. Sequence changes in the 5' untranslated region were common, as were changes in the VP1-coding region, including changes in a major antigenic site. Analysis of stool samples taken from cases of acute flaccid paralysis revealed the presence of mixtures of recombinant polioviruses, in addition to the emergence of new sequence variants. Avoiding the need for cell culture isolation dramatically shortened the time needed for identification and analysis of vaccine-derived polioviruses and could be useful for preliminary screening of clinical samples. The amplified full-length viral cDNA can be archived and used to recover live virus for further virological studies.

DNA, Complementary↗

Differences in the immunogenicity of latent membrane protein 1 (LMP1) encoded by Epstein-Barr virus genomes derived from LMP1-positive and -negative nasopharyngeal carcinoma.

We have previously shown that an EBV-encoded latent membrane protein 1 (LMP1) gene derived from a nude mouse-propagated nasopharyngeal carcinoma (NPC) tumor and expressed in nonimmunogenic murine mammary carcinoma S6C cells failed to convey immunogenicity (rejectability) in syngeneic mice, whereas the corresponding B-cell derived LMP1 gene made the mice highly immunogenic. This raised the question of whether LMPL-expressing NPCs have been selected for low immunogenicity at the viral gene expression level. If so, LMP1-negative tumors that carry highly methylated LMP1 regulatory sequences may not have been exposed to a similar immunoselection. In the present study, we have compared LMP1 genes derived from two LMP1-positive NPCs and two LMP1-negative NPCs. All four genes were expressed in S6C cells in parallel with the previously tested isolates from a B-cell (B95-8)-derived and a nude mouse-propagated NPC (Cao)-derived gene. As in the previous study, we have found that the B-cell-derived LMP1 isolate was highly immunogenic. LMP1-positive tumor-derived isolates were poorly immunogenic, whereas the isolates from the LMP1-negative NPC tumor had intermediate immunogenicity. Sequence data revealed that LMP1 genes from LMP1-expressing NPC had 16 amino acid substitutions, whereas LMP1 from non-LMP1-expressing NPC had only 9 amino acid changes in the coding region. Three of the changes were at shared sites, but with different modifications. The fact that the gene from non-LMP1-expressing NPC mutated at a low frequency but was more immunogenic than the LMP1 gene derived from LMP1-expressing NPC, which was highly mutated but less immunogenic, favors the idea that LMP1-positive tumors escape immunosurveillance in immunocompetent hosts by either a selective down-regulation of LMP1 expression, methylation in the LMP1 promoter sequence, or mutation of LMP1 in LMP1-expressing samples.

Animals↗

Intraspecific nuclear DNA variation in Drosophila.

We have summarized and analyzed all available nuclear DNA sequence polymorphism studies for three species of Drosophila, D. melanogaster (24 loci), D. simulans (12 loci), and D. pseudoobscura (5 loci). Our major findings are: (1) The average nucleotide heterozygosity ranges from about 0.4% to 2% depending upon species and function of the region, i.e., coding or noncoding. (2) Compared to D. simulans and D. pseudoobscura (which are about equally variable), D. melanogaster displays a low degree of DNA polymorphism. (3) Noncoding introns and 3' and 5' flanking DNA shows less polymorphism than silent sites within coding DNA. (4) X-linked genes are less variable than autosomal genes. (5) Transition (Ts) and transversion (Tv) polymorphisms are about equally frequent in non-coding DNA and at fourfold degenerate sites in coding DNA while Ts polymorphisms outnumber Tv polymorphisms by about 2:1 in total coding DNA. The increased Ts polymorphism in coding regions is likely due to the structure of the genetic code: silent changes are more often Ts's than are replacement substitutions. (6) The proportion of replacement polymorphisms is significantly higher in D. melanogaster than in D. simulans. (7) The level of variation in coding DNA and the adjacent noncoding DNA is significantly correlated indicating regional effects, most notably recombination. (8) Surprisingly, the level of polymorphism at silent coding sites in D. melanogaster is positively correlated with degree of codon usage bias. (9) Three proposed tests of the neutral theory of DNA polymorphisms have been performed on the data: Tajima's test, the HKA test, and the McDonald-Kreitman test. About half of the loci fail to conform to the expectations of neutral theory by one of the tests. We conclude that many variables are affecting levels of DNA polymorphism in Drosophila, from properties of nucleotides to population history and, perhaps, mating structure. No simple, all encompassing explanation satisfactorily accounts for the data.

Animals↗

Letter binding and invariant recognition of masked words: behavioral and neuroimaging evidence.

Fluent readers recognize visual words across changes in case and retinal location, while maintaining a high sensitivity to the arrangement of letters. To evaluate the automaticity and functional anatomy of invariant word recognition, we measured brain activity during subliminal masked priming. By preceding target words with an unrelated prime, a repeated prime, or an anagram made of the same letters, we separated letter-level and whole-word codes. By changing the case and the retinal location of primes and targets, we evaluated the invariance of those codes. Our results indicate that an invariant binding of letters into words is achieved unconsciously through a series of increasingly invariant stages in the left occipito-temporal pathway.

Adult↗

What the codes say on life safety. Significant changes for residential care.

The fire protection requirements contained in the model building codes and the Life Safety Code are constantly being scrutinized and revised. The American Health Care Association is actively participating in the code development and revision processes of the model code organizations and NFPA to ensure that the interests of the residential care community can be considered. While the effort is being coordinated by AHCA's Residential Care Committee, all interested parties are invited to participate and have their opinions and concerns heard.

Accident Prevention↗

Pre-receptor profile of sensory images and primary afferent neuronal representation in the mormyrid electrosensory system.

Afferent responses to the fish's own electric organ discharge were explored in the electrosensory lobe of the mormyrid fish Gnathonemus petersii. In order to understand the neural encoding of natural sensory images, responses were examined while objects of different conductivities were placed at different positions along the skin of the fish, i.e. at different points within, and also outside, peripheral receptive fields. The presence of an object in the fish's self-generated electric field produces local modulation of transcutaneous current density. Measurement of the local electric organ discharge shows that object images formed at the electroreceptive sensory surface have an opposing center-surround, 'Mexican hat' profile. This is a pre-receptor phenomenon intrinsic to the physical nature of the sensory stimulus that takes place prior to neural lateral inhibition and is independent of such central inhibition. Stimulus intensity is encoded in the latency and number of action potentials in the response of primary afferent fibers. It is also reflected in changes in the amplitude and area of extracellular field potentials recorded in the deep granular layer of the electrosensory lobe. Since the object image consists of a redistribution of current density over the receptive surface, its presence is coded by change in the activity of receptors over an area much larger than the skin surface facing the object. We conclude that each receptor encodes information coming from the whole scene in a manner that may seem ambiguous when seen from a single point and that, in order to extract specific object features, the brain must process the electric image represented over the whole sensory surface.

Action Potentials↗

Amino acid codes in mitochondria as possible clues to primitive codes.

Differences between mitochondrial codes and the universal code indicate that an evolutionary simplification has taken place, rather than a return to a more primitive code. However, these differences make it evident that the universal code is not the only code possible, and therefore earlier codes may have differed markedly from the previous code. The present universal code is probably a "frozen accident." The change in CUN codons from leucine to threonine (Neurospora vs. yeast mitochondria) indicates that neutral or near-neutral changes occurred in the corresponding proteins when this code change took change took place, caused presumably by a mutation in a tRNA gene.

Amino Acids↗

[Blood cholesterol in women].

The distribution of blood lipids is described and their role as cardiovascular risk factors in women is discussed. The determinants of serum cholesterol levels are identified in genes, in particular in changes of codes for LDL and HDL; in habitual food intake as polyunsaturated and saturated fats. Obesity, jointed by atherogenic lipoproteins as total and LDL-cholesterol, is considered a risk factor independently on smoking habit or age. Finally the role of menopause in changing lipoprotein levels and in increasing cardiovascular risk is reported.

Adult↗

Rising asthma mortality in young males in Hong Kong, 1976-85.

The trend in asthma mortality in Hong Kong was estimated from published statistics for the years 1976-85. To avoid coding errors in death certifications, only asthma deaths in the age group 5-34 years were analysed. Mortality rose annually by an average of 10.5% in male (P less than 0.02), but not female asthmatics. Such an increase was not due to a change in coding as a result of the revision of the International Classification of Diseases in 1979, or an exchange of diagnostic labelling from other respiratory diseases. The exact causes for the increase in asthma mortality have yet to be determined.

Adolescent↗

Examination of AVPR1a as an autism susceptibility gene.

Impaired reciprocal social interaction is one of the core features of autism. While its determinants are complex, one biomolecular pathway that clearly influences social behavior is the arginine-vasopressin (AVP) system. The behavioral effects of AVP are mediated through the AVP receptor 1a (AVPR1a), making the AVPR1a gene a reasonable candidate for autism susceptibility. We tested the gene's contribution to autism by screening its exons in 125 independent autistic probands and genotyping two promoter polymorphisms in 65 autism affected sibling pair (ASP) families. While we found no nonconservative coding sequence changes, we did identify evidence of linkage and of linkage disequilibrium. These results were most pronounced in a subset of the ASP families with relatively less severe impairment of language. Thus, though we did not demonstrate a disease-causing variant in the coding sequence, numerous nontraditional disease-causing genetic abnormalities are known to exist that would escape detection by traditional gene screening methods. Given the emerging biological, animal model, and now genetic data, AVPR1a and genes in the AVP system remain strong candidates for involvement in autism susceptibility and deserve continued scrutiny.

Autistic Disorder↗