Ordered-domain unfolding of thermophilic isolated β subunit ATP synthase

被引:2
|
作者
Lopez-Perez, Edgar [1 ]
de Gomez-Puyou, Marietta Tuena [2 ]
Nunez, Concepcion Jose [2 ]
Zapien, Denise Martinez [1 ]
Guardado, Salomon Alas [1 ]
Beltran, Hiram Isaac [3 ]
Perez-Hernandez, Gerardo [1 ]
机构
[1] Univ Autonoma Metropolitana, Dept Ciencias Nat, Unidad Cuajimalpa, Mexico City, Mexico
[2] Univ Nacl Autonoma Mexico, Dept Bioquim & Biol Estruct, Inst Fisiol Celular, Mexico City, Mexico
[3] Univ Autonoma Metropolitana, Dept Ciencias Bas, Div Ciencias Bas & Ingn, Unidad Azcapotzalco, Mexico City, Mexico
关键词
circular dichroism; free energy landscape; molecular dynamics; ordered domains; protein unfolding; SECONDARY STRUCTURE FORMATION; FREE-ENERGY DETERMINANTS; MOLECULAR-DYNAMICS; THERMAL-STABILITY; HEAT-CAPACITY; BINDING; MECHANISM; NUCLEOTIDES; RECOGNITION; F-1-ATPASE;
D O I
10.1002/pro.4689
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
The flexibility of the ATP synthase's beta subunit promotes its role in the ATP synthase rotational mechanism, but its domains stability remains unknown. A reversible thermal unfolding of the isolated beta subunit (T beta) of the ATP synthase from Bacillus thermophilus PS3, tracked through circular dichroism and molecular dynamics, indicated that T beta shape transits from an ellipsoid to a molten globule through an ordered unfolding of its domains, preserving the beta-sheet residual structure at high temperature. We determined that part of the stability origin of T beta is due to a transversal hydrophobic array that crosses the beta-barrel formed at the N-terminal domain and the Rossman fold of the nucleotide-binding domain (NBD), while the helix bundle of the C-terminal domain is the less stable due to the lack of hydrophobic residues, and thus the more flexible to trigger the rotational mechanism of the ATP synthase.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] C-terminal regulatory domain of the ε subunit of FoF1 ATP synthase enhances the ATP-dependent H+ pumping that is involved in the maintenance of cellular membrane potential in Bacillus subtilis
    Akanuma, Genki
    Tagana, Tomoaki
    Sawada, Maho
    Suzuki, Shota
    Shimada, Tomohiro
    Tanaka, Kan
    Kawamura, Fujio
    Kato-Yamada, Yasuyuki
    MICROBIOLOGYOPEN, 2019, 8 (08):
  • [22] Atomistic simulations indicate the c-subunit ring of the F1Fo ATP synthase is not the mitochondrial permeability transition pore
    Zhou, Wenchang
    Marinelli, Fabrizio
    Nief, Corrine
    Faraldo-Gomez, Jose D.
    ELIFE, 2017, 6
  • [23] Molecular Dynamics Simulations of the Mutated Proton-Transferring a-Subunit of E. coli FoF1-ATP Synthase
    Ivontsin, Leonid A.
    Mashkovtseva, Elena V.
    Nartsissov, Yaroslav R.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (10)
  • [24] Computational Design of Inhibitors Targeting the Catalytic β Subunit of Escherichia coli FOF1-ATP Synthase
    Pablo Avila-Barrientos, Luis
    Fernando Cofas-Vargas, Luis
    Aguero-Chapin, Guillermin
    Hernandez-Garcia, Enrique
    Ruiz-Carmona, Sergio
    Valdez-Cruz, Norma A.
    Trujillo-Roldan, Mauricio
    Weber, Joachim
    Ruiz-Blanco, Yasser B.
    Barril, Xavier
    Garcia-Hernandez, Enrique
    ANTIBIOTICS-BASEL, 2022, 11 (05):
  • [25] Nucleotide Binding States of Subunit A of the A-ATP Synthase and the Implication of P-Loop Switch in Evolution
    Kumar, Anil
    Manimekalai, Malathy Sony Subramanian
    Balakrishna, Asha Manikkoth
    Jeyakanthan, Jeyaraman
    Grueber, Gerhard
    JOURNAL OF MOLECULAR BIOLOGY, 2010, 396 (02) : 301 - 320
  • [26] Purification and crystallization of the entire recombinant subunit E of the energy producer A1Ao ATP synthase
    Balakrishna, Asha Manikkoth
    Hunke, Cornelia
    Grueber, Gerhard
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 2010, 66 : 324 - 326
  • [27] A more robust version of the Arginine 210-switched mutant in subunit a of the Escherichia coli ATP synthase
    Bae, Leon
    Vik, Steven B.
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2009, 1787 (09): : 1129 - 1134
  • [28] Subunit organization of the stator part of the F0 complex from Escherichia coli ATP synthase
    Greie, JC
    Deckers-Hebestreit, G
    Altendorf, K
    JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 2000, 32 (04) : 357 - 364
  • [29] Bedaquiline, an FDA-approved drug, inhibits mitochondrial ATP production and metastasis in vivo, by targeting the gamma subunit (ATP5F1C) of the ATP synthase
    Fiorillo, Marco
    Scatena, Cristian
    Naccarato, Antonio Giuseppe
    Sotgia, Federica
    Lisanti, Michael P.
    CELL DEATH AND DIFFERENTIATION, 2021, 28 (09) : 2797 - 2817
  • [30] Interaction of the Thermoplasma acidophilum A1A0-ATP synthase peripheral stalk with the catalytic domain
    Kish-Trier, Erik
    Wilkens, Stephan
    FEBS LETTERS, 2009, 583 (19) : 3121 - 3126