Structure⁻Activity Prediction of ACE Inhibitory/Bitter Dipeptides-A Chemometric Approach Based on Stepwise Regression

scientific article published on 08 March 2019

Structure⁻Activity Prediction of ACE Inhibitory/Bitter Dipeptides-A Chemometric Approach Based on Stepwise Regression is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3390/MOLECULES24050950
P932PMC publication ID6429184
P698PubMed publication ID30857128

P50authorAnna IwaniakQ77980957
Justyna BucholskaQ84915306
Monika HrynkiewiczQ86073824
Małgorzata DarewiczQ47396482
Piotr MinkiewiczQ47396490
P2860cites workQuantitative structure-activity relationships of the bitter thresholds of amino acids, peptides, and their derivatives.Q52427662
The characterization of amino acid sequences in proteins by statistical methodsQ53019602
BIOPEP database of sensory peptides and amino acidsQ62125924
Protein folding and the genetic code: An alternative quantitative modelQ70980565
Amino Acid Side Chain Descriptors for Quantitative Structure-Activity Relationship Studies of Peptide AnalogsQ71943815
Quantitative structure-activity relationship study of bitter di- and tri-peptides including relationship with angiotensin I-converting enzyme inhibitory activityQ79372972
Application of Fourier transform Raman spectroscopy for prediction of bitterness of peptidesQ79389413
Bioactive peptidesQ81828492
Structural requirements of Angiotensin I-converting enzyme inhibitory peptides: quantitative structure-activity relationship study of di- and tripeptidesQ82429334
A simple method for displaying the hydropathic character of a proteinQ26778481
International Union of Pharmacology Committee on Receptor Nomenclature and Drug Classification. XXXVIII. Update on terms and symbols in quantitative pharmacologyQ28189543
Amino acid difference formula to help explain protein evolutionQ29614440
BioMagResBankQ29614807
Angiotensin I-converting enzyme inhibitor derived from cross-linked oyster protein.Q34033495
Angiotensin I-converting enzyme (ACE) inhibitory activity and ACE inhibitory peptides of salmon (Salmo salar) protein hydrolysates obtained by human and porcine gastrointestinal enzymesQ34158535
The structural dependence of amino acid hydrophobicity parametersQ34280826
Hypotensive peptides from milk proteinsQ34309622
Blood pressure-lowering peptides from neo-fermented buckwheat sprouts: a new approach to estimating ACE-inhibitory activityQ35253120
Food protein-originating peptides as tastants - Physiological, technological, sensory, and bioinformatic approachesQ36360018
Purposeful selection of variables in logistic regressionQ37077675
BIOPEP database and other programs for processing bioactive peptide sequences.Q37252412
Therapeutic application of peptides and proteins: parenteral forever?Q37600236
Bioactive Peptides in Animal Food ProductsQ39293788
AAindex: amino acid index database, progress report 2008Q42002245
QSBR study of bitter taste of peptides: application of GA-PLS in combination with MLR, SVM, and ANN approachesQ42769420
Performance of using multiple stepwise algorithms for variable selectionQ44843603
Quantifying the effect of burial of amino acid residues on protein stabilityQ47296179
A quantitative in silico analysis calculates the angiotensin I converting enzyme (ACE) inhibitory activity in pea and whey protein digestsQ47628491
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue5
P407language of work or nameEnglishQ1860
P304page(s)950
P577publication date2019-03-08
P1433published inMoleculesQ151332
P1476titleStructure⁻Activity Prediction of ACE Inhibitory/Bitter Dipeptides-A Chemometric Approach Based on Stepwise Regression
P478volume24

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Q92455097Quantitative Structure-Activity Relationship Study of Bitter Di-, Tri- and Tetrapeptides Using Integrated Descriptorscites workP2860

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