Importance of protein intrinsic conformational dynamics and transient nature of non-covalent interactions in ligand binding affinity

被引:4
|
作者
Kekez, Mario [1 ]
Zanki, Vladimir [1 ]
Anticevic, Ivan [1 ,2 ]
Rokov-Plavec, Jasmina [1 ]
Marsavelski, Aleksandra [1 ]
机构
[1] Univ Zagreb, Fac Sci, Dept Chem, Div Biochem, Zagreb, Croatia
[2] Rudjer Boskovic Inst, Div Marine & Environm Res, Lab Mol Ecotoxicol, Zagreb, Croatia
关键词
Intrinsic protein dynamics; Binding affinity; Distant protein truncation; Microscale thermophoresis; Molecular-dynamics simulations; BEN1; NADP cofactor; MULTIPLE SEQUENCE ALIGNMENT; MOLECULAR-DYNAMICS; SIMULATIONS; SPECIFICITY; MECHANISM; ACCURACY; SOFTWARE; MOTION; AMBER;
D O I
10.1016/j.ijbiomac.2021.10.045
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have recently identified BEN1 as a protein interactor of seryl-tRNA synthetase (SerRS) from model plant Arabidopsis thaliana. BEN1 contains an NADP+ binding domain and possesses acidic N-terminal extension essential for interaction with A. thaliana SerRS. This extension, specific for BEN1 homologues from Brassicaceae family, is solvent-exposed and distant to the nucleotide-binding site. We prepared a truncated BEN1 variant Delta N17BEN1 lacking the first 17 amino acid of this N-terminal extension as well as full-length BEN1 to investigate how the truncation affects the binding affinity towards coenzyme NADP+. By performing microscale thermophoresis (MST) experiments we have shown that both BEN1 variants bind the NADP+ cofactor, however, truncated BEN1 showed 34-fold higher affinity towards NADP+ indicating that its core protein structure is not just preserved but it binds NADP+ even stronger. To further corroborate the obtained results, we opted for a computational approach based on classical molecular dynamics simulations of both complexes. Our results have shown that both truncated and intact BEN1 variants form the same number of interactions with the NADP+ cofactor; however, it was the interaction occupancy that was affected. Namely, three independent MD simulations showed that the Delta N17BEN1 variant in complex with NADP+ has significantly higher interaction occupancy thus binds NADP+ with more than one order of magnitude higher affinity. Contrary to our expectations, the truncation of this distant region that does not communicate with the nucleotide-binding site didn't result in the gain of interaction but affected the intrinsic conformational dynamics which in turn fine-tuned the binding affinity by increasing the interaction occupancy and strength of the key conserved cation-pi interaction between Arg69 and adenine of NADP+ and hydrogen bond between Ser244 and phosphate of NADP+.
引用
收藏
页码:692 / 700
页数:9
相关论文
共 50 条
  • [21] Structures, binding energies and non-covalent interactions of furan clusters
    Malloum, Alhadji
    Conradie, Jeanet
    JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 2022, 111
  • [22] Functional and conformational changes to soy proteins accompanying anthocyanins: Focus on covalent and non-covalent interactions
    Sui, Xiaonan
    Sun, Hongbo
    Qi, Baokun
    Zhang, Min
    Li, Yang
    Jiang, Lianzhou
    FOOD CHEMISTRY, 2018, 245 : 871 - 878
  • [23] Nature and consequences of non-covalent interactions between flavonoids and macronutrients in foods
    Bordenave, Nicolas
    Hamaker, Bruce R.
    Ferruzzi, Mario G.
    FOOD & FUNCTION, 2014, 5 (01) : 18 - 34
  • [24] Importance of Non-Covalent Interactions in Yeast Cell Wall Molecular Organization
    Kalebina, Tatyana S.
    Rekstina, Valentina V.
    Pogarskaia, Elizaveta E.
    Kulakovskaya, Tatiana
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (05)
  • [25] ArkDTA: attention regularization guided by non-covalent interactions for explainable drug-target binding affinity prediction
    Gim, Mogan
    Choe, Junseok
    Baek, Seungheun
    Park, Jueon
    Lee, Chaeeun
    Ju, Minjae
    Lee, Sumin
    Kang, Jaewoo
    BIOINFORMATICS, 2023, 39 : i448 - i457
  • [26] ArkDTA: attention regularization guided by non-covalent interactions for explainable drug-target binding affinity prediction
    Gim, Mogan
    Choe, Junseok
    Baek, Seungheun
    Park, Jueon
    Lee, Chaeeun
    Ju, Minjae
    Lee, Sumin
    Kang, Jaewoo
    BIOINFORMATICS, 2023, 39 : I448 - I457
  • [27] Intrinsic affinity of protein - ligand binding by differential scanning calorimetry
    Linkuviene, Vaida
    Zubriene, Asta
    Matulis, Daumantas
    BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2022, 1870 (09):
  • [28] Computational study of lignin-protein non-covalent interactions
    Pandey, Jyotsna L.
    Watts, Heath D.
    Kubicki, James D.
    Richard, Tom L.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 245
  • [29] Conformational Control of Donor-Acceptor Molecules Using Non-covalent Interactions
    Ahmad, Shawana
    Eng, Julien
    Penfold, Thomas J.
    JOURNAL OF PHYSICAL CHEMISTRY A, 2024, 128 (38): : 8035 - 8044
  • [30] Characterization of Diverse Non-covalent Interactions Associated with Protein Acetylation
    Xu, Lingjia
    Zhang, Zhengyong
    Kong, Jilie
    CHEMICAL BIOLOGY & DRUG DESIGN, 2012, 80 (01) : 46 - 53