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How could the location of the mirror impact whether something is chiral?
In flatland, chirality would be defined in only 2 dimensions. There is no third axis about which a reflection could occur.
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How could the location of the mirror impact whether something is chiral?
In flatland, chirality would be defined in only 2 dimensions. There is no third axis about which a reflection could occur.
lol OK, I live and think in 3 dimensions :D
I think there might have been some electrical forces causing a shearing effect. :)
No belly buttons. Made not born. I find it interesting also.I loved this post. I was only able to read every 4th word or so but I couldn’t stop reading the whole thing. Things like this are interesting. Like did Adam and Eve have belly buttons.
I am not making that assumption. If we are talking about proteins, then basically all amino acids have the same orientation. How is an opposite chirality protein going to be consistently produced when it relies on a point mutation of an opposite chirality amino acid? There would need to be a unique codon for the opposite enantiomer. I am not aware of unique codon for specific enantiomers of amino acids.
Oh yeah, I know that chirality at the molecular definitely can result in chirality in higher level structures (particularly for things like the molecular motors that drive flagella). I just don't think chirality on a molecular level is the source of ALL chirality in higher level structures.Just a follow up, I came across this paper while looking for something else for work, where a single point mutation changes the chirality of bacterial flagella rotation. So it does happen...
A Little Switch: Alternative Domain Conformations Control Bacterial Flagella Rotation Direction
http://journals.plos.org/plosbiology/article?id=10.1371/journal.pbio.1001480
"The flagella of E. coli move the bacterium in one of two ways. When they spin counterclockwise, the cell is propelled forward in a straight line. When they spin clockwise, the bacterium tumbles in place, ultimately pointing in some new, random direction, ready for another straight-line run."
"They identified a key residue in the HAMP structure that stabilized the inhibitory state, and showed that mutation of this residue could flip the HAMP into the alternative conformation and ‘‘turn on’’ the activity of the protein."
Oh yeah, I know that chirality at the molecular definitely can result in chirality in higher level structures (particularly for things like the molecular motors that drive flagella). I just don't think chirality on a molecular level is the source of ALL chirality in higher level structures.