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Ligand-functionalized protein-containing

For reasons that are not yet clear, skeletal muscle transverse (T)-tubule membranes contain 50-100-fold more high affinity DHP receptors than any other source yet identified [43,45]. Transverse tubule membranes contain 30-70 pmol/mg protein of DHP receptors that bind [ H]PN 200-100 with a of 0.1-0.2nM. The strategy utilized for the purification of L-type channels was similar to that used for the purification of other high affinity ligand binding proteins, and its success was predicted from the prior use of such an approach for the purification of other ion channels [54,55]. Thus the L-type channels were purified as high affinity DHP receptors, with the anticipation that the purified component(s) would constitute functional Ca channels. [Pg.320]

The structures of type II copper sites have not as yet generated as much interest, but the hetero-dinuclear structures of type IIC copper sites and the unusual protein donor ligands found in type IIB copper sites are noteworthy. The synthetic model approach to gain insight into the structures and functions of these types of copper sites will be also described. The diverse functions of a variety of proteins containing type IIA copper sites inspired many chemists to mimic the functions with synthetic copper complexes, even though the spectroscopic properties of the complexes are not unusual. Results of these studies will be reviewed and different aspects of the reactions relating to enzymatic catalysis will be discussed. [Pg.3]

In an example that illustrates the application of NMR relaxation measurements for studying ligand flexibility, Kessler and colleagues (57) investigated the role of disulfide bonds in the a-amylase inhibitor tendamistat. This small protein contains two disulfide bonds (C11-C27 and C45-C73) and opening cf the latter is known to reduce the melting temperature of the protein (i.e., reduce its stability), but in this case does not affect its a-amylase inhibitor function. The latter observation... [Pg.528]


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Contains function

Functional protein-functionalized

Functionality protein

Functionalized ligands

Ligand containing

Protein-ligand

Proteins functioning

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