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Secondary macromolecular structure

Secondary recalcitrance Macromolecular structure Chitin (A-acetyl-D-... [Pg.49]

The three classes of macromolecular structures can be considered at a number of increasingly complex levels, described as their primary, secondary and tertiary structures. [Pg.76]

Keratins - ot-Keratins are the major proteins of hair and fingernails and a compose a major fraction of animal skin, oi-keratins are classified in the broad group of intermediate filament proteins, which play important structural roles in nuclei, cytoplasm, and cell surfaces. Their secondary structure is composed predominantly of -helices. Figure 6.11 shows the coiled-coil structure of the ot-keratin in hair. The chemical composition of the cysteine residues in ot-keratin affects its macromolecular structure and function. For example, hair has relatively few cysteine cross-links, whereas fingernails have many such cross-links, / -keratins, on the other hand, contain much more pleated sheet secondary strucure than ot-keratins and are found in feathers and scales. [Pg.1590]

From these data, a statistical analysis of the whole set of macromolecules can be performed. This permits a measure of the yield of targeted macromolecules as well as a precise determination of the number and characteristics of supplementary macromolecular structures formed through secondary reactions. These are important data that yield information on their mechanisms of formation. [Pg.674]

For ultrafiltration, the macromolecular solutes and colloidal species usually have insignificant osmotic pressures. In this case, the concentration at the membrane surface (C ) can rise to the point of incipient gel precipitation, forming a dynamic secondary membrane on top of the primary structure (Figure 7). This secondary membrane can offer the major resistance to flow. [Pg.409]

The biochemistry of plant cell-walls is still at the stage of identifying and elucidating the covalent structures of the macromolecular components of the primary cell-wall. The secondary, tertiary, and quarternary structures of the polysaccharides therein have received only scant attention.29-32 The ultrastructural distribution of polymers within the wall, the integration of newly synthesized macromolecules into the wall, and... [Pg.269]

Figure 4.18. Graphic display of macromolecular interaction with Cn3D. The display window of Cn3D illustrates the 3D structure of Zn finger peptide fragments (secondary structure features) bound to the duplex oligonucleotides (brown backbone). Zinc atoms are depicted as spheres. The alignment window shows the amino acid sequence depicting the secondary structures (blue helices and arrows for a-helical and /J-strand structures, respectively) and interacting (thin brown arrows) residues. The structure file, 1A1K.val, is derived from lAAY.pdb. Figure 4.18. Graphic display of macromolecular interaction with Cn3D. The display window of Cn3D illustrates the 3D structure of Zn finger peptide fragments (secondary structure features) bound to the duplex oligonucleotides (brown backbone). Zinc atoms are depicted as spheres. The alignment window shows the amino acid sequence depicting the secondary structures (blue helices and arrows for a-helical and /J-strand structures, respectively) and interacting (thin brown arrows) residues. The structure file, 1A1K.val, is derived from lAAY.pdb.

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See also in sourсe #XX -- [ Pg.55 , Pg.180 ]




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Macromolecular structures

Secondary macromolecular

Secondary structure

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