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  1. Book: Protein aggregation

    Cieplak, Andrzej Stanisław

    methods and protocols

    (Methods in molecular biology ; 2551 ; Springer protocols)

    2023  

    Author's details edited by Andrzej Stanisław Cieplak
    Series title Methods in molecular biology ; 2551
    Springer protocols
    Collection
    Keywords Protein binding ; Protein folding ; Proteins/Denaturation ; Cell aggregation
    Subject code 572.633
    Language English
    Size xvi, 681 Seiten, Illustrationen, 26 cm
    Publisher Humana Press
    Publishing place New York, NY
    Publishing country United States
    Document type Book
    HBZ-ID HT021591432
    ISBN 978-1-0716-2596-5 ; 9781071625972 ; 1-0716-2596-9 ; 1071625977
    Database Catalogue ZB MED Medicine, Health

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  2. Article: Tau Inclusions in Alzheimer's, Chronic Traumatic Encephalopathy and Pick's Disease. A Speculation on How Differences in Backbone Polarization Underlie Divergent Pathways of Tau Aggregation.

    Cieplak, Andrzej Stanisław

    Frontiers in neuroscience

    2019  Volume 13, Page(s) 488

    Abstract: Tau-related dementias appear to involve specific to each disease aggregation pathways and morphologies of filamentous tau assemblies. To understand etiology of these differences, here we elucidate molecular mechanism of formation of tau PHFs based on the ...

    Abstract Tau-related dementias appear to involve specific to each disease aggregation pathways and morphologies of filamentous tau assemblies. To understand etiology of these differences, here we elucidate molecular mechanism of formation of tau PHFs based on the PMO theory of misfolding and aggregation of pleiomorphic proteins associated with neurodegenerative diseases. In this model, fibrillization of tau is initiated by the coupled binding and folding of the MTB domains that yields antiparallel homodimers, in analogy to folding of split inteins. The free energy of binding is minimized when the antiparallel alignment brings about backbone-backbone H-bonding between the MTBD segments of similar "strand" propensities. To assess these propensities, a function of the NMR shielding tensors of the C
    Language English
    Publishing date 2019-05-15
    Publishing country Switzerland
    Document type Journal Article
    ZDB-ID 2411902-7
    ISSN 1662-453X ; 1662-4548
    ISSN (online) 1662-453X
    ISSN 1662-4548
    DOI 10.3389/fnins.2019.00488
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Protein folding, misfolding and aggregation: The importance of two-electron stabilizing interactions.

    Cieplak, Andrzej Stanisław

    PloS one

    2017  Volume 12, Issue 9, Page(s) e0180905

    Abstract: Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-helical fold in one environment, assemble into all-β-sheet or collapse into a coil in another, and rapidly polymerize in yet another one via divergent ... ...

    Abstract Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-helical fold in one environment, assemble into all-β-sheet or collapse into a coil in another, and rapidly polymerize in yet another one via divergent aggregation pathways that yield broad diversity of aggregates' morphology. A thorough understanding of this behaviour may be necessary to develop a treatment for Alzheimer's and related disorders. Unfortunately, our present comprehension of folding and misfolding is limited for want of a physicochemical theory of protein secondary and tertiary structure. Here we demonstrate that electronic configuration and hyperconjugation of the peptide amide bonds ought to be taken into account to advance such a theory. To capture the effect of polarization of peptide linkages on conformational and H-bonding propensity of the polypeptide backbone, we introduce a function of shielding tensors of the Cα atoms. Carrying no information about side chain-side chain interactions, this function nonetheless identifies basic features of the secondary and tertiary structure, establishes sequence correlates of the metamorphic and pH-driven equilibria, relates binding affinities and folding rate constants to secondary structure preferences, and manifests common patterns of backbone density distribution in amyloidogenic regions of Alzheimer's amyloid β and tau, Parkinson's α-synuclein and prions. Based on those findings, a split-intein like mechanism of molecular recognition is proposed to underlie dimerization of Aβ, tau, αS and PrPC, and divergent pathways for subsequent association of dimers are outlined; a related mechanism is proposed to underlie formation of PrPSc fibrils. The model does account for: (i) structural features of paranuclei, off-pathway oligomers, non-fibrillar aggregates and fibrils; (ii) effects of incubation conditions, point mutations, isoform lengths, small-molecule assembly modulators and chirality of solid-liquid interface on the rate and morphology of aggregation; (iii) fibril-surface catalysis of secondary nucleation; and (iv) self-propagation of infectious strains of mammalian prions.
    MeSH term(s) Amyloid beta-Peptides/chemistry ; Amyloid beta-Peptides/genetics ; Amyloid beta-Peptides/metabolism ; Animals ; Electrons ; Humans ; Hydrogen-Ion Concentration ; Models, Molecular ; PrPSc Proteins/chemistry ; PrPSc Proteins/genetics ; PrPSc Proteins/metabolism ; Protein Aggregates ; Protein Domains ; Protein Folding ; Protein Multimerization ; Protein Stability ; Protein Structure, Secondary ; alpha-Synuclein/chemistry ; alpha-Synuclein/genetics ; alpha-Synuclein/metabolism ; tau Proteins/chemistry ; tau Proteins/genetics ; tau Proteins/metabolism
    Chemical Substances Amyloid beta-Peptides ; PrPSc Proteins ; Protein Aggregates ; SNCA protein, human ; alpha-Synuclein ; tau Proteins
    Language English
    Publishing date 2017
    Publishing country United States
    Document type Journal Article
    ISSN 1932-6203
    ISSN (online) 1932-6203
    DOI 10.1371/journal.pone.0180905
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: Protein folding, misfolding and aggregation

    Andrzej Stanisław Cieplak

    PLoS ONE, Vol 12, Iss 9, p e

    The importance of two-electron stabilizing interactions.

    2017  Volume 0180905

    Abstract: Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-helical fold in one environment, assemble into all-β-sheet or collapse into a coil in another, and rapidly polymerize in yet another one via divergent ... ...

    Abstract Proteins associated with neurodegenerative diseases are highly pleiomorphic and may adopt an all-α-helical fold in one environment, assemble into all-β-sheet or collapse into a coil in another, and rapidly polymerize in yet another one via divergent aggregation pathways that yield broad diversity of aggregates' morphology. A thorough understanding of this behaviour may be necessary to develop a treatment for Alzheimer's and related disorders. Unfortunately, our present comprehension of folding and misfolding is limited for want of a physicochemical theory of protein secondary and tertiary structure. Here we demonstrate that electronic configuration and hyperconjugation of the peptide amide bonds ought to be taken into account to advance such a theory. To capture the effect of polarization of peptide linkages on conformational and H-bonding propensity of the polypeptide backbone, we introduce a function of shielding tensors of the Cα atoms. Carrying no information about side chain-side chain interactions, this function nonetheless identifies basic features of the secondary and tertiary structure, establishes sequence correlates of the metamorphic and pH-driven equilibria, relates binding affinities and folding rate constants to secondary structure preferences, and manifests common patterns of backbone density distribution in amyloidogenic regions of Alzheimer's amyloid β and tau, Parkinson's α-synuclein and prions. Based on those findings, a split-intein like mechanism of molecular recognition is proposed to underlie dimerization of Aβ, tau, αS and PrPC, and divergent pathways for subsequent association of dimers are outlined; a related mechanism is proposed to underlie formation of PrPSc fibrils. The model does account for: (i) structural features of paranuclei, off-pathway oligomers, non-fibrillar aggregates and fibrils; (ii) effects of incubation conditions, point mutations, isoform lengths, small-molecule assembly modulators and chirality of solid-liquid interface on the rate and morphology of aggregation; ...
    Keywords Medicine ; R ; Science ; Q
    Subject code 612
    Language English
    Publishing date 2017-01-01T00:00:00Z
    Publisher Public Library of Science (PLoS)
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  5. Article ; Online: Parabolic Relationship between the Basicity of the Nucleophile and pi-Face Selection in Addition of the Substituted Acetylide Ions to Cyclohexanone and Cyclohexanethione.

    Cieplak, Andrzej Stanislaw

    The Journal of organic chemistry

    1998  Volume 63, Issue 3, Page(s) 521–530

    Abstract: Energy changes, structural variation, and electron density shifts during nucleophilic addition to cyclohexanone and cyclohexanethione were examined by means of the ab initio calculations at the HF/6-31G level. The atomic charge on the carbonyl C was ... ...

    Abstract Energy changes, structural variation, and electron density shifts during nucleophilic addition to cyclohexanone and cyclohexanethione were examined by means of the ab initio calculations at the HF/6-31G level. The atomic charge on the carbonyl C was found to become more positive upon approach of the nucleophile; the density deformation maps suggest that the charge polarization occurs to a large extent in the pi bond. Since this effect is not compensated for by charge transfer until in the late stage of addition, the reaction site is considerably electron deficient (more so than the carbonyl C in the substrate) for most of the reaction path, and its interactions with the ligands are dominated by hyperconjugation with the vicinal C-H and C-C bonds. Relative stabilities of the axial and equatorial transition-state structures were examined in the series HN=C, ON&tbd1;C(-), N&tbd1;C(-), FC&tbd1;C(-), HC&tbd1;C(-), SBeC&tbd1;C(2-), O(3)SC&tbd1;C(2-), H(3)AlC&tbd1;C(2-), SC&tbd1;C(2-), H(3)BC&tbd1;C(2-), and C&tbd1;C(2-) and found to depend on polarization of the electrophiles, C=O vs C=S, and basicity of the nucleophiles. The latter dependence is parabolic: the axial preference reaches a maximum for the moderately basic anions, and it is diminished or even reversed for the most and least basic nucleophiles, i.e., in the case of reactions proceeding through the very early or very late transition states. Thus, the stereoelectronic effect is largest in the region of the reaction coordinate where the electron deficiency at the reaction site reaches a maximum. These findings corroborate the premises of the hypothesis of hyperconjugative assistance to bond formation and are consistent with major trends in the experimental data if the stereochemistry of alkylation of 4-tert-butylcyclohexanone is correlated with Pauling electronegativity of metals in the case of methylmetals, methylmetal ate complexes, allylmetals and arylmetals, and with the pK(a) of conjugated acids in the case of sulfur-, carbonyl-, and nitrile-stabilized carbanions.
    Language English
    Publishing date 1998-02-06
    Publishing country United States
    Document type Journal Article
    ZDB-ID 123490-0
    ISSN 1520-6904 ; 0022-3263
    ISSN (online) 1520-6904
    ISSN 0022-3263
    DOI 10.1021/jo9713722
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Article: Single-site mutation and secondary structure stability: an isodesmic reaction approach. The case of unnatural amino acid mutagenesis Ala-->Lac.

    Cieplak, Andrzej Stanisław / Sürmeli, Nur Başak

    The Journal of organic chemistry

    2004  Volume 69, Issue 10, Page(s) 3250–3261

    Abstract: A method is described to evaluate backbone interactions in proteins via computational unnatural amino acid mutagenesis. Several N-acetyl polyalanyl amides (AcA(n)NH(2)) were optimized in the representative helical (3(10)-, 4(13)-, and a "hybrid" kappa- ... ...

    Abstract A method is described to evaluate backbone interactions in proteins via computational unnatural amino acid mutagenesis. Several N-acetyl polyalanyl amides (AcA(n)NH(2)) were optimized in the representative helical (3(10)-, 4(13)-, and a "hybrid" kappa-helix, n = 7, 9, 10, 14) and hairpin (two- and three-stranded antiparallel beta-sheets with type I turns betaalphaalphaepsilon, n = 6, 9, 10) conformations, and extended conformers of N-acetyl polyalanyl methylamides (n = 2, 3) were used to derive multistranded beta-sheet fragments. Subsequently, each residue of every model structure was substituted, one at a time, with l-lactic acid. The resulting mutant structures were again optimized, and group-transfer energies DeltaE(GT) were obtained as heats of the isodesmic reactions: AcA(n)NHR + AcOMe --> AcA(x)LacA(y)NHR + AcNHMe (R = H, CH(3)). These group-transfer energies correlate with the degree of charge polarization of the substituted peptide linkages as measured by the difference Deltae in H and O Mulliken populations in HN-C=O and with the H-bond distances in the "wild-type" structures. A good correlation obtains for the HF/3-21G and B3LYP/6-31G* group-transfer energies. The destabilization effects are interpreted in terms of loss of interstrand and intrastrand H-bonds, decrease in Lewis basicity of the C=O group, and O...O repulsion. On the basis of several comparisons of Ala --> Lac DeltaE(GT)'s with heats of the NH --> CH(2) substitutions, the latter contribution is estimated (B3LYP/6-31G*) to range between 1.5 and 2.4 kcal mol(-1), a figure close to the recent experimental DeltaDeltaG(o) value of 2.6 kcal mol(-1) (McComas, C. C.; Crowley, B. M.; Boger, D. L. J. Am.Chem. Soc. 2003, 125, 9314). The partitioning yields the following maximum values of the electronic association energy of H-bonds in the examined sample of model structures (B3LYP/6-31G* estimates): 3(10)-helix D(e) = -1.7 kcal mol(-1), alpha-helix D(e) = -3.8 kcal mol(-1), beta-sheet D(e) = -6.1 kcal mol(-1). The premise of experimental evaluations of the backbone-backbone H-bonding that Ala --> Lac substitution in proteins is isosteric (e.g., Koh, J. T.; Cornish, V. W.; Schultz, P. G. Biochemistry 1997, 36, 11314) is often but not always corroborated. Examination of the integrity of H-bonding pattern and phi(i), psi(i) distribution identified several mutants with significant distortions of the "wild-type" structure resulting inter alia from the transitions between i, i + 3 and i, i + 4 H-bonding in helices, observed previously in the crystallographic studies of depsipeptides (Ohyama, T.; Oku, H.; Hiroki, A.; Maekawa, Y.; Yoshida, M.; Katakai, R. Biopolymers 2000, 54, 375; Karle, I. L.; Das, C.; Balaram, P. Biopolymers 2001, 59, 276). Thus, the isodesmic reaction approach provides a simple way to gauge how conformation of the polypeptide chain and dimensions of the H-bonding network affect the strength of backbone-backbone C=O...HN bonds. The results indicate that the stabilization provided by such interactions increases on going from 3(10)-helix to alpha-helix to beta-sheet.
    MeSH term(s) Alanine/genetics ; Amides/chemistry ; Amino Acids/genetics ; Computer Simulation ; Hydrogen Bonding ; Leucine/genetics ; Mutagenesis ; Mutation ; Protein Conformation ; Protein Structure, Secondary ; Proteins/chemistry ; Proteins/genetics
    Chemical Substances Amides ; Amino Acids ; Proteins ; Leucine (GMW67QNF9C) ; Alanine (OF5P57N2ZX)
    Language English
    Publishing date 2004-05-14
    Publishing country United States
    Document type Journal Article
    ZDB-ID 123490-0
    ISSN 1520-6904 ; 0022-3263
    ISSN (online) 1520-6904
    ISSN 0022-3263
    DOI 10.1021/jo0358372
    Database MEDical Literature Analysis and Retrieval System OnLINE

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