User:Mausfield
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This user loves sugars and glycobiology. |
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This user (like you) has a busted CMAH enzyme. |
Hello!
[edit]I am an evolutionary biologist interested in human origins, and in particular our unusual sialic acid glycobiology and how it shapes our unique immune systems and life history. On Wikipedia my main project is improving articles related to those topics. For example, there are thousands of Wiki articles on glycoconjugate biomolecules and currently only 197 pages categorized as such!
What is glycobiology? What the heck is a glycoconjugate? Glad you asked ....


HALT, KNAVE!
To pass you must FIRST endure (aka "click on") the
~ SYMBOL NOMENCLATURE FOR GLYCANS ~




Now go join WikiProject: Molecular Biology and help CATEGORIZE!

Even a single sugar can have a huge effect on our biology, such as defining our ABO blood group (see right). If you have a regular galactose on your h-antigen precursor added by your trusty galactosyl transferase, you're in group B. If that galactose has an N-acetyl group on it because you have a fancy N-acetylgalactosaminyl transferase, you're in group A. If you have any of the various mutations that result in neither, you are stuck with the h-antigen precursor are in group O (go donate blood please). About 2–3 million years ago, someone in our lineage experienced a mutation that made them unable to produce a very common vertebrate sugar, a sialic acid called 5-glycolylneuraminic acid or Neu5Gc from its closely related starting material, Neu5Ac. This appears to have had widespread effects on our biology, at the very least making us molecularly invisible to the many pathogens which use Neu5Gc as their hook to get into target cells. Fun fact! The "H" in influenza strains (you've probably heard of H1N1) stands for a sugar-binding protein (also knows as a lectin) called hemagglutinin. The "N" stands for neuraminidase (which is reall a sialidase), and lets influenza virus particles release themselves from the sugar-coated surfaces of our red blood cells by chopping off those same sugars they grabbed to get inside. Variations in these two proteins define the influenza clades we care about in medicine, and have wide-ranging effects on how well a given flu spreads or affects someone who gets it.
So, sugars have a huge presence in the barriers that separate the basic pieces of life, including the different compartments within us and the meeting point between our cells and the massive number of external things they encounter. One of the most evolutionarily important roles they have is in helping organisms distinguish information about the world around us. This may sound trivial, but the self vs non-self problem is a recurrent them in major evolutionary transitions, and we can today see the big problem-solving steps when we compare single- to multicellular organisms, multicellular to multi-tissue organisms (which defines Eumetazoans), and multi-tissue organisms to mammals, who of course had to figure out carrying around a foreign–but tolerable!–little individual for some period of time (go thank a mom somehwere).
| Evolutionary transition | How long ago? (in billions of years) | New cellular awareness | New type of "self" | Self-identifying examples |
|---|---|---|---|---|
| Single cell | 3.9 to 4.1 | Me vs environment | Chemical self | Lipids and membrane proteins |
| Lineage of cells | 3.5 to 3.8 | My genetics vs other genetics | Genetic self | Cell-surface glycoproteins, enzymes recognizing nucleic acid sequences |
| Eukaryotic life | 1.8 to 2.1 | My friends vs non-friends | Symbiotic self | Compartments within the cell, membrane trafficking proteins |
| Sexual reproduction | 1.2 to 2 | That stranger is hot! | Reproductive self | Mating system, gamete recognition markers, compatibility checks |
| Multicellular life | 0.6 to 2.2 (and onwards) | My neighboring cells vs strangers | Diverse self | Adhesion proteins |
| Multi-tissue life | 0.6 to 0.65 | My diverse cell types | Intrapersonal self | Diverse glycocalyx, tissue-specific markers, junction proteins, nerves and endocrine system |
| Teachable immune system | 0.43 to 0.48 | My changeable friends and enemies | Teachable self | MHC, T- and B-cell receptors, and adaptive immunity |
..WIP....