Lipids in Protein Misfolding / edited by Olga Gursky.
Contributor(s): SpringerLink (Online service)
| Gursky, Olga, editor literario
Series: (Advances in Experimental Medicine and Biology, 0065-2598; 855).Publisher: Cham, Switzerland : Springer, 2015Description: 1 recurso en línea (XIII, 260 páginas) : 83 ilustraciones, 57 ilustraciones en color.ISBN: 9783319173443.Subject: Química bioorgánica
| Item type | Current library | Collection | Call number | Copy number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias de la Salud | QP751 .L575 2015 EB (Browse shelf(Opens below)) | .i11569578 | Acceso electrónico | eBOOK .i11569578 |
Role of Lipids in Folding, Misfolding and Function of Integral Membrane Proteins -- ProteinÂ{uDA73}sfolding in Lipid-Mimetic Environments.-Â{uCA70}pids in Amyloid-β Processing, Aggregation, and Toxicity -- Role of Cholesterol and Phospholipids in Amylin Misfolding, Aggregation and Etiology of Islet Amyloidosis -- Stability, Oligomerization, and Amyloidogenicity of Apo Serum Amyloid A -- Interactions of Lipid Membranes with Fibrillar Protein Aggregates -- The Role of Lipid in Misfolding and Amyloid Fibril Formation by Apolipoprotein C-II -- Amyloid-Forming Properties of Human Apolipoproteins: Sequence Analyses and Structural Insights -- Computational Approaches to Identification of Aggregation Sites and the Mechanism of Amyloid Growth -- Role of Syndecans in Lipid Metabolism and Human Diseases.
This book addresses molecular mechanisms of protein misfolding and the role of lipids and related molecules in these complex processes. The focus is on the biophysical and structural studies of proteins that are involved in major human disorders such as Alzheimerâ€{u3824}isease, systemic amyloidoses, diabetes II, inflammation and atherosclerosis. Misfolding often results from protein mutations or modifications. Misfolding of membrane proteins can cause topological changes that target the proteins for degradation. Misfolding of soluble globular proteins and peptides converts them into β-sheet-rich aggregates and amyloid fibrils. This process can disrupt the structural integrity of the lipid membranes and thereby contribute to amyloid toxicity. In turn, lipids and lipid-associated molecules such as apolipoproteins and heparan sulfate proteoglycans, which are ubiquitous constituents of amyloid plaques, can influence protein misfolding via diverse mechanisms that are addressed in this book. The book features chapters describing the role of lipids in the misfolding of a wide range of proteins, including small peptides, globular proteins, lipid surface-binding proteins, and integral membrane proteins. The role of individual lipid molecules, lipid surfaces, and the membrane field is addressed, including specific and non-specific interactions with protein oligomers and mature fibrils. Distinct effects of various lipids on the nucleation and growth of amyloid fibrils are discussed. Modern computational approaches to the analysis of amyloid formation are addressed.The book should be useful to experts in the field but is also accessible to novices.
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