Earlier quoted context omitted.
I've been hearing quantum superposition and tunneling as a factor in enzyme mechanisms at least since I was a grad student (circa 1988ish). It was all the rage that perhaps it was the main enzymatic mechanism; but, it grew a little less popular as more 'conventional' explanations seemed to provide acceptable kinetic models. "sources"? too many to list, but just search for quantum effects and enzymes and set your last…
Yes, I think the work that was published in this area was mostly speculative. I want links to mainstream stuff that I can put a little more trust in, like the work done at LBL on photosynthesis and entanglement.
Room temperature quantum transfer in biological systems
11–20 of 23 posts
Re: Room temperature quantum transfer in biological systems
#12Earlier quoted context omitted.
Depends on what you mean by reliable examples, but it's been researched for well over 25 years. And point where something goes from probably to clear cut gets fuzzy. (2009) "Quantum biology? Tunneling in enzymes" Over the past two decades the possibility of quantum tunneling of protons in enzymes has attracted considerable attention. (See for example a piece in Nature by Philip Ball (my favourite science writer) or t…
That work is highly speculative (I've studied, but not as my primary work, enzyme kinetics and reaction mechanisms). Finding holes in transition state theory isn't hard and I don't see that it's necessary to invoke tunneling protons to come up with better theories. Even the physical experiments cited in the Ball article, are pretty speculative, and aren't accepted by the mainstream. I find it pretty amusing, because…
Re: Room temperature quantum transfer in biological systems
#13Earlier quoted context omitted.
Depends on what you mean by reliable examples, but it's been researched for well over 25 years. And point where something goes from probably to clear cut gets fuzzy. (2009) "Quantum biology? Tunneling in enzymes" Over the past two decades the possibility of quantum tunneling of protons in enzymes has attracted considerable attention. (See for example a piece in Nature by Philip Ball (my favourite science writer) or t…
That work is highly speculative (I've studied, but not as my primary work, enzyme kinetics and reaction mechanisms). Finding holes in transition state theory isn't hard and I don't see that it's necessary to invoke tunneling protons to come up with better theories. Even the physical experiments cited in the Ball article, are pretty speculative, and aren't accepted by the mainstream. I find it pretty amusing, because…
Re: Room temperature quantum transfer in biological systems
#14Re: Room temperature quantum transfer in biological systems
#15Earlier quoted context omitted.
That work is highly speculative (I've studied, but not as my primary work, enzyme kinetics and reaction mechanisms). Finding holes in transition state theory isn't hard and I don't see that it's necessary to invoke tunneling protons to come up with better theories. Even the physical experiments cited in the Ball article, are pretty speculative, and aren't accepted by the mainstream. I find it pretty amusing, because…
And i had a committee member forbid me from including quantum effects in the modeling of my enzyme. He said it was "too speculative". All science is speculative, until it isn't. You would be well served to reduce your "highly speculative" filters. That is, continue to propose your interesting new chains of causation. If there were braver people than me (which shouldn't be hard) then perhaps understanding enzyme mecha…
Also, did you push back against the committee member? Show data? At least create a plausible doubt in their mind?
The reason enzyme mechanisms are so hard to study is that getting proteins into a state where you can capture data from that femtosecond where the reaction occurs is hard. Recent improvements in free electron lasers for fourth generation synchrotrons will greatly improve this.
Re: Room temperature quantum transfer in biological systems
#16Earlier quoted context omitted.
That work is highly speculative (I've studied, but not as my primary work, enzyme kinetics and reaction mechanisms). Finding holes in transition state theory isn't hard and I don't see that it's necessary to invoke tunneling protons to come up with better theories. Even the physical experiments cited in the Ball article, are pretty speculative, and aren't accepted by the mainstream. I find it pretty amusing, because…
Interesting, I have heard it suggested that tunneling is one of those things that's clearly going on, but not necessarily relevant. Much like how relativity is required for sufficiently accurate solar system models, but you can generally ignore it.
Re: Room temperature quantum transfer in biological systems
#17Earlier quoted context omitted.
Yes, I think the work that was published in this area was mostly speculative. I want links to mainstream stuff that I can put a little more trust in, like the work done at LBL on photosynthesis and entanglement.
Just look at some of those names in the authorship of that haphazard search link i included. Richards, Pullman, McElroy, Bhattacharyya, Pauling ... If you can't put trust in some of those folks then you won't find it in general. (whatever the hell "trust" has to do with good science, notwithstanding)
Random searches on terms bring up a lot of stuff, but it takes time to evaluate everything. On the other hand, I'm already up to speed on the state of the art in protein chemistry, and I'm not seeing strong physical evidence from experimentalists supporting this.
Re: Room temperature quantum transfer in biological systems
#18Earlier quoted context omitted.
Depends on what you mean by reliable examples, but it's been researched for well over 25 years. And point where something goes from probably to clear cut gets fuzzy. (2009) "Quantum biology? Tunneling in enzymes" Over the past two decades the possibility of quantum tunneling of protons in enzymes has attracted considerable attention. (See for example a piece in Nature by Philip Ball (my favourite science writer) or t…
That work is highly speculative (I've studied, but not as my primary work, enzyme kinetics and reaction mechanisms). Finding holes in transition state theory isn't hard and I don't see that it's necessary to invoke tunneling protons to come up with better theories. Even the physical experiments cited in the Ball article, are pretty speculative, and aren't accepted by the mainstream. I find it pretty amusing, because…
Re: Room temperature quantum transfer in biological systems
#19This is not brand new (not this particular research, but quantum systems in nature). It has long been known that some enzymatic reactions take advantage of quantum tunnelling to bridge reaction energies - sources to come (mobile)
I'm not sure I've seen reliable examples other than photosynthesis, and it hasn't been "a long time". Happy to inspect your sources.
http://www.cchem.berkeley.edu/jukgrp/klinman_group/Research....
Re: Room temperature quantum transfer in biological systems
#20Earlier quoted context omitted.
I'm not sure I've seen reliable examples other than photosynthesis, and it hasn't been "a long time". Happy to inspect your sources.
Judith Klinman's work at Berkeley includes proton tunneling in proteins. http://www.cchem.berkeley.edu/jukgrp/klinman_group/Research....