New Paper Examines How the Complexity of Glycan Structures Points to Intelligent Design

BioCosmos, biology, carbohydrates, cell adhesion, Complexity, dGRNs, endoplasmic reticulum, epigenetic factors, Evolution, glycans, glycopatterns, glycosylation, glycosyltransferases, Golgi apparatus, immune responses, intelligent causes, Intelligent Design, kidney cells, nerve cells, probabilistic resources, proteins, Russell Carlson, signaling, stochastic processes, University of Georgia
"This is, of course, important in order for a kidney cell to be and function as a kidney cell, a nerve cell to function as a nerve cell, and so forth." Source
Read More

Irreducibly Complex, Bacterial Cell Wall Manufacture Is an Evolutionary Enigma

amino acids, bacteria, bacterial cell division, bacterial cell wall, binary fission, biology, cell wall, cleavage, Evolution, foresight, glycosyltransferases, Gram-negative bacteria, gram-positive bacteria, Intelligent Design, Irreducible Complexity, Mycoplasma, natural selection, nisin, osmotic pressure, penicillin, penicillin-binding proteins, pentapeptide, peptides, peptidoglycan, peptidoglycan precursors, re-synthesis, self-replication, transpeptidases
Evolutionary processes cannot select for some future utility that is only realized after passing through a maladaptive intermediate. Source
Read More