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Structure of serum albumin.

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TLDR
This chapter provides an insight of the findings of past significant papers with the current knowledge of the recently determined high resolution X-ray structure of serum albumin and suggests that AFP may have a higher affinity for some unknown ligands important for fetal development.
Abstract
Publisher Summary This chapter provides an insight of the findings of past significant papers with the current knowledge of the recently determined high resolution X-ray structure of serum albumin. The most outstanding property of albumin is its ability to bind reversibly an incredible variety of ligands. The sequences of all albumins are characterized by a unique arrangement of disulfide double loops that repeat as a series of triplets. Albumin belongs to a multigene family of proteins that includes α- fetoprotein (AFP) and vitamin D-binding protein (VDP), also known as G complement (Gc) protein. Although AFP is considered the fetal counterpart of albumin, its binding properties are distinct and it is suggested that AFP may have a higher affinity for some unknown ligands important for fetal development. Domain structure and the arrangement of the disulfides, the surface charge distribution, and the conformational flexibility of the albumin molecule are described. The nature of ligand binding, including small organics, long-chain fatty acids, and metals, to multiple sites on the albumin molecule is clearly depicted. The chapter concludes with the perceptive comments on future directions being taken to explore the structure and function of this fascinating protein.

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Citations
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Journal ArticleDOI

Milk proteins-derived bioactive peptides in dairy products: molecular, biological and methodological aspects

TL;DR: Molecular and biological properties of milk proteins, as precursors of bioactive peptides was characterised in the work and the strategy of research and obtaining of such peptides both in laboratory and industrial scale, as well as the range of their commercial application was presented.
Journal ArticleDOI

Study on the interaction between antibacterial drug and bovine serum albumin: a spectroscopic approach.

TL;DR: The binding of sulfamethoxazole (SMZ) to bovine serum albumin (BSA) was investigated by spectroscopic methods viz., fluorescence, FT-IR and UV-vis absorption techniques and showed the binding of SMZ to BSA induced conformational changes in BSA.
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Study on the interaction of the epilepsy drug, zonisamide with human serum albumin (HSA) by spectroscopic and molecular docking techniques.

TL;DR: The results indicated that binding of ZNS to HSA caused strong fluorescence quenching of HSA through staticQuenching mechanism, hydrogen bonds and van der Waals contacts are the major forces in the stability of protein ZNS complex.
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A Three-Step Model for Protein–Gold Nanoparticle Adsorption

TL;DR: This work has developed a straightforward and rapid NMR-based approach to quantitatively characterize the protein–AuNP interaction, immune to the inner filter effect, which complicates fluorescence measurements, and it can be performed without prior centrifugation of samples.
Journal ArticleDOI

The glass transition behavior of the globular protein bovine serum albumin.

TL;DR: A major structural relaxation results from the collective motion of the globules at the supra-globule length scale and, at 20 degrees C, this is arrested at water contents of 40% w/w, which appears to be analogous to the glass transition in colloidal hard spheres.
References
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Journal ArticleDOI

The Attractions of Proteins for Small Molecules and Ions

TL;DR: The number and variety of known compounrjs between proteins and small molecules are increasing rapidly and make a fascinating story as discussed by the authors, and there are many compounds of serum albumin, which was used during the war by many chemists, most of whom found at least one 6ew compound.
Journal ArticleDOI

Atomic structure and chemistry of human serum albumin.

TL;DR: The three-dimensional structure of human serum albumin has been determined crystallographically to a resolution of 2.8 Å and should provide insight into future pharmacokinetic and genetically engineered therapeutic applications of serumalbumin.
Journal ArticleDOI

Biochemistry of nitric oxide and its redox-activated forms

TL;DR: The integration of this chemistry with current perspectives of NO biology illuminates many aspects of NO biochemistry, including the enzymatic mechanism of synthesis, the mode of transport and targeting in biological systems, the means by which its toxicity is mitigated, and the function-regulating interaction with target proteins.