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synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy-entropy compensation
by
Yang, Cheng
, Kaifer, Angel E
, Ko, Young Ho
, Rekharsky, Mikhail V
, Liu, Simin
, Gilson, Michael K
, Moghaddam, Sarvin
, Chen, Wei
, Selvapalam, N
, Mori, Tadashi
, Kim, Kimoon
, Inoue, Yoshihisa
, Isaacs, Lyle
, Kim, Hyunuk
, Sobransingh, David
in
Aqueous chemistry
/ Aqueous solutions
/ avidin
/ Avidin - chemistry
/ Binding sites
/ Biological Sciences
/ Biotin
/ Biotin - chemistry
/ Biotinylation
/ Bridged-Ring Compounds - chemistry
/ Calorimetry - methods
/ Chemistry - methods
/ Crystal structure
/ Crystallography, X-Ray - methods
/ Cucurbitaceae
/ Enthalpy
/ Entropy
/ Ferrocenes
/ Free energy
/ Hydrogen Bonding
/ Imidazoles - chemistry
/ Kinetics
/ Mathematical minima
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Protons
/ Rigidity
/ Streptavidin
/ Thermodynamics
2007
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synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy-entropy compensation
by
Yang, Cheng
, Kaifer, Angel E
, Ko, Young Ho
, Rekharsky, Mikhail V
, Liu, Simin
, Gilson, Michael K
, Moghaddam, Sarvin
, Chen, Wei
, Selvapalam, N
, Mori, Tadashi
, Kim, Kimoon
, Inoue, Yoshihisa
, Isaacs, Lyle
, Kim, Hyunuk
, Sobransingh, David
in
Aqueous chemistry
/ Aqueous solutions
/ avidin
/ Avidin - chemistry
/ Binding sites
/ Biological Sciences
/ Biotin
/ Biotin - chemistry
/ Biotinylation
/ Bridged-Ring Compounds - chemistry
/ Calorimetry - methods
/ Chemistry - methods
/ Crystal structure
/ Crystallography, X-Ray - methods
/ Cucurbitaceae
/ Enthalpy
/ Entropy
/ Ferrocenes
/ Free energy
/ Hydrogen Bonding
/ Imidazoles - chemistry
/ Kinetics
/ Mathematical minima
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Protons
/ Rigidity
/ Streptavidin
/ Thermodynamics
2007
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synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy-entropy compensation
by
Yang, Cheng
, Kaifer, Angel E
, Ko, Young Ho
, Rekharsky, Mikhail V
, Liu, Simin
, Gilson, Michael K
, Moghaddam, Sarvin
, Chen, Wei
, Selvapalam, N
, Mori, Tadashi
, Kim, Kimoon
, Inoue, Yoshihisa
, Isaacs, Lyle
, Kim, Hyunuk
, Sobransingh, David
in
Aqueous chemistry
/ Aqueous solutions
/ avidin
/ Avidin - chemistry
/ Binding sites
/ Biological Sciences
/ Biotin
/ Biotin - chemistry
/ Biotinylation
/ Bridged-Ring Compounds - chemistry
/ Calorimetry - methods
/ Chemistry - methods
/ Crystal structure
/ Crystallography, X-Ray - methods
/ Cucurbitaceae
/ Enthalpy
/ Entropy
/ Ferrocenes
/ Free energy
/ Hydrogen Bonding
/ Imidazoles - chemistry
/ Kinetics
/ Mathematical minima
/ Models, Molecular
/ Molecular Conformation
/ Molecular Structure
/ Molecules
/ Protons
/ Rigidity
/ Streptavidin
/ Thermodynamics
2007
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synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy-entropy compensation
Journal Article
synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy-entropy compensation
2007
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Overview
The molecular host cucurbit[7]uril forms an extremely stable inclusion complex with the dicationic ferrocene derivative bis(trimethylammoniomethyl)ferrocene in aqueous solution. The equilibrium association constant for this host-guest pair is 3 x 10¹⁵ M⁻¹ (Kd = 3 x 10⁻¹⁶ M), equivalent to that exhibited by the avidin-biotin pair. Although purely synthetic systems with larger association constants have been reported, the present one is unique because it does not rely on polyvalency. Instead, it achieves its extreme affinity by overcoming the compensatory enthalpy-entropy relationship usually observed in supramolecular complexes. Its disproportionately low entropic cost is traced to extensive host desolvation and to the rigidity of both the host and the guest.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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