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A new way to view biophysical forces in cancer biology, cancer cell biology and cancer genes
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An ‘RNA Base2 Half Base Color Progression’ applies to approaches for the whole genome level: functional, genetic, proteomic, biochemical, and cell biological. Our work combines visualization research with computer science [i.e., specifically, the concept of being able to visualize interactive algorithmic results in an iterative predictable process], enabling the integration of a computational and interactive means for data exploration and analysis.
(a) An ‘RNA Codon Half Base Color Progression’ predicts information density in
the RNA codon triplet bases is similar to how areas of gene density are
located on a chromosome.
(b) An ‘RNA Codon Half Base Color Progression’ may be useful in curating gene
sequence overlays and lowering error rates in reading cancer gene sequences.
(c) An ‘RNA Codon Half Base Color Progression’ predicts ‘U’ Uracil acts like a
structural morphism during protein synthesis.
(d) An ‘RNA Codon Half Base Color Progression’ predicts the concept of ’backfilling’
is a key to protein folding.
(e) An ‘RNA Codon Half Base Color Progression’ predicts that the diagonal cutting
through the pentose sugar in the 16 RNA Base Pairs and the 64 RNA/DNA
codon triplets facilitates the microsecond transcription-translation process.
(f) An ‘RNA Codon Half Base Color Progression’ predicts the existence of black and
white Hox codons (inferred by Hox genes) as a key in Protein Folding.
(g) An ‘RNA Codon Half Base Color Progression’ predicts that the 16 RNA Base
Pairs are ‘nested’ in and ‘co-determinant’ with DNA; and that each of the 16
RNA Base Pairs serves as a progressive core template to create 3 more RNA
codon triplets, accounting for each of the 64 ‘present’ RNA Codon Triplets.
(h) An ‘RNA Codon Half Base Color Progression’ predicts that balance, color,
folding, shape and volume are connected and have an underlying mathematical
relationship that is inherent in the architecture of RNA Base Pair and DNA/RNA
codon triplet nucleotide emergent behavior.
Title: A new way to view biophysical forces in cancer biology, cancer cell biology and cancer genes
Description:
An ‘RNA Base2 Half Base Color Progression’ applies to approaches for the whole genome level: functional, genetic, proteomic, biochemical, and cell biological.
Our work combines visualization research with computer science [i.
e.
, specifically, the concept of being able to visualize interactive algorithmic results in an iterative predictable process], enabling the integration of a computational and interactive means for data exploration and analysis.
(a) An ‘RNA Codon Half Base Color Progression’ predicts information density in
the RNA codon triplet bases is similar to how areas of gene density are
located on a chromosome.
(b) An ‘RNA Codon Half Base Color Progression’ may be useful in curating gene
sequence overlays and lowering error rates in reading cancer gene sequences.
(c) An ‘RNA Codon Half Base Color Progression’ predicts ‘U’ Uracil acts like a
structural morphism during protein synthesis.
(d) An ‘RNA Codon Half Base Color Progression’ predicts the concept of ’backfilling’
is a key to protein folding.
(e) An ‘RNA Codon Half Base Color Progression’ predicts that the diagonal cutting
through the pentose sugar in the 16 RNA Base Pairs and the 64 RNA/DNA
codon triplets facilitates the microsecond transcription-translation process.
(f) An ‘RNA Codon Half Base Color Progression’ predicts the existence of black and
white Hox codons (inferred by Hox genes) as a key in Protein Folding.
(g) An ‘RNA Codon Half Base Color Progression’ predicts that the 16 RNA Base
Pairs are ‘nested’ in and ‘co-determinant’ with DNA; and that each of the 16
RNA Base Pairs serves as a progressive core template to create 3 more RNA
codon triplets, accounting for each of the 64 ‘present’ RNA Codon Triplets.
(h) An ‘RNA Codon Half Base Color Progression’ predicts that balance, color,
folding, shape and volume are connected and have an underlying mathematical
relationship that is inherent in the architecture of RNA Base Pair and DNA/RNA
codon triplet nucleotide emergent behavior.
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