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Tag: convergent gene arrangements

Re-inventing mutation-driven evolution (2)

Dec 20, 2016James KohlAdaptations, Alternative Splicings, Autophagy, Diseases & Disorders, Ecology, RNA Directedanti-entropic virucidal energy, autophagy, bio-functional information, Carl Woese, Cellular Clocks, chromosomal rearrangements, chromosomal stability, convergent gene arrangements, deep evolutionary traits, DNA damage repair, ecological adaptation, ecological variation, energy as information, genomic entropy, Long non-coding RNAs, metabolism, microRNA/messenger RNA, microRNAs, mitochondrial genomes, morphogenesis, mRNA, mRNA accumulation, natural information processing, p53 network, phylogenetic signal, Phylogenetic trees, pre-mRNA, protein folding chemistry, RNA-mediated amino acid substitutions, Splicing efficiency, supercoiled DNA, temperature-dependent, temperature-dependent oscillations, viral latency, Virus-driven energy theft

See: Re-inventing mutation-driven evolution See also: Temperature regulates splicing efficiency of the cold-inducible RNA-binding protein gene Cirbp … we suspected that splicing efficiency, as defined by the fraction of pre-mRNA converted into mature mRNA, must have contributed to temperature-dependent Cirbp mRNA accumulation Splicing efficiency is energy-dependent in the context of temperature-dependent oscillations that link the […]

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About J.V. Kohl

James Vaughn KohlJames V. Kohl was the first to accurately conceptualize human pheromones, and began presenting his findings to the scientific community in 1992. He continues to present to, and publish for, diverse scientific and lay audiences, while constantly monitoring the scientific presses for new information that is relevant to the development of his initial and ongoing conceptualization of human pheromones.

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amino acid substitutions angstroms to ecosystems anti-entropic virucidal energy atoms to ecosystems autophagy biodiversity biophysically constrained cell type differentiation chemotaxis chirality chromosomal rearrangements Codon optimality conditions of life de novo Creation ecological adaptations ecological variation endogenous RNA interference energy-dependent energy as information feedback loops G-protein-coupled receptors gene expression healthy longevity hydrogen-atom transfer in DNA base pairs in solution innate immune system microRNA/messenger RNA balance microRNAs mutations natural selection nutrient-dependent pathology pheromone-controlled pheromones phototaxis physiology of reproduction pre-mRNA protein folding chemistry RNA-mediated RNA-mediated amino acid substitutions sunlight supercoiled DNA transgenerational epigenetic inheritance viral latency virus-driven degradation of messenger RNA Virus-driven energy theft
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