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Dive into the research topics where Chieko Kimura-Sakiyama is active.

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Featured researches published by Chieko Kimura-Sakiyama.


Journal of Molecular Biology | 2011

A Three-Dimensional FRET Analysis to Construct an Atomic Model of the Actin–Tropomyosin Complex on a Reconstituted Thin Filament

Masao Miki; Satoshi Makimura; Takahiro Saitoh; Masashi Bunya; Yasuyuki Sugahara; Yutaka Ueno; Chieko Kimura-Sakiyama; Hidetaka Tobita

Fluorescence resonance energy transfer (FRET) was used to construct an atomic model of the actin-tropomyosin (Tm) complex on a reconstituted thin filament. We generated five single-cysteine mutants in the 146-174 region of rabbit skeletal muscle α-Tm. An energy donor probe was attached to a single-cysteine Tm residue, while an energy acceptor probe was located in actin Gln41, actin Cys374, or the actin nucleotide binding site. From these donor-acceptor pairs, FRET efficiencies were determined with and without Ca(2+). Using the atomic coordinates for F-actin and Tm, we searched all possible arrangements for Tm segment 146-174 on F-actin to calculate the FRET efficiency for each donor-acceptor pair in each arrangement. By minimizing the squared sum of deviations for the calculated FRET efficiencies from the observed FRET efficiencies, we determined the location of the Tm segment on the F-actin filament. Furthermore, we generated a set of five single-cysteine mutants in each of the four Tm regions 41-69, 83-111, 216-244, and 252-279. Using the same procedures, we determined each segments location on the F-actin filament. In the best-fit model, Tm runs along actin residues 217-236, which were reported to compose the Tm binding site. Electrostatic, hydrogen-bonding, and hydrophobic interactions are involved in actin and Tm binding. The C-terminal region of Tm was observed to contact actin more closely than did the N-terminal region. Tm contacts more residues on actin without Ca(2+) than with it. Ca(2+)-induced changes on the actin-Tm contact surface strongly affect the F-actin structure, which is important for muscle regulation.


Biophysical Journal | 2013

Calcium-Dependent Interaction Sites of Tropomyosin on Reconstituted Muscle Thin Filaments with Bound Myosin Heads as Studied by Site-Directed Spin-Labeling

Keisuke Ueda; Chieko Kimura-Sakiyama; Tomoki Aihara; Masao Miki; Toshiaki Arata

To identify the interaction sites of Tm, we measured the rotational motion of a spin-label covalently bound to the side chain of a cysteine that was genetically incorporated into rabbit skeletal muscle tropomyosin (Tm) at positions 13, 36, 146, 160, 174, 190, 209, 230, 271, or 279. Most of the Tm residues were immobilized on actin filaments with myosin-S1 bound to them. The residues in the mid-portion of Tm, namely, 146, 174, 190, 209, and 230, were mobilized when the troponin (Tn) complex bound to the actin-Tm-S1 filaments. The addition of Ca(2+) ions partially reversed the Tn-induced mobilization. In contrast, residues at the joint region of Tm, 13, 36, 271, and 279 were unchanged or oppositely changed. All of these changes were detected using a maleimide spin label and less obviously using a methanesulfonate label. These results indicated that Tm was fixed on thin filaments with myosin bound to them, although a small change in the flexibility of the side chains of Tm residues, presumably interfaced with Tn, actin and myosin, was induced by the binding of Tn and Ca(2+). These findings suggest that even in the myosin-bound (open) state, Ca(2+) may regulate actomyosin contractile properties via Tm.


Biophysical Journal | 2011

Interaction sites of tropomyosin in muscle thin filament as identified by site-directed spin-labeling.

Keisuke Ueda; Chieko Kimura-Sakiyama; Tomoki Aihara; Masao Miki; Toshiaki Arata

To identify interaction sites we measured the rotational motion of a spin label covalently bound to the side chain of a cysteine genetically incorporated into rabbit skeletal muscle tropomyosin (Tm) at positions 13, 36, 146, 160, 174, 190, 209, 230, 271, and 279. Upon the addition of F-actin, the mobility of all the spin labels, especially at position 13, 271, or 279, of Tm was inhibited significantly. Slow spin-label motion at the C-terminus (at the 230th and 271st residues) was observed upon addition of troponin. The binding of myosin-head S1 fragments without troponin immobilized Tm residues at 146, 160, 190, 209, 230, 271, and 279, suggesting that these residues are involved in a direct interaction between Tm and actin in its open state. As immobilization occurred at substoichiometric amounts of S1 binding to actin (a 1:7 molar ratio), the structural changes induced by S1 binding to one actin subunit must have propagated and influenced interaction sites over seven actin subunits.


Journal of Molecular Biology | 2008

Fluorescence resonance energy transfer between residues on troponin and tropomyosin in the reconstituted thin filament: modeling the troponin-tropomyosin complex.

Chieko Kimura-Sakiyama; Yutaka Ueno; Katsuzo Wakabayashi; Masao Miki


Biochemistry | 2006

The second half of the fourth period of tropomyosin is a key region for Ca2+-dependent regulation of striated muscle thin filaments

Akiko Sakuma; Chieko Kimura-Sakiyama; Atsuhiro Onoue; Yuji Shitaka; Takahisa Kusakabe; Masao Miki


Seibutsu Butsuri | 2011

3E1334 High-resolution structural determination of the cofilin-decorated actin filament by single-particle analysis of cryo-electron micrographs(3E Muscle 2,The 49th Annual Meeting of the Biophysical Society of Japan)

Kotaro Tanaka; Chieko Kimura-Sakiyama; Shuheng Dai; Yuichiro Maéda; Akihiro Narita


生物物理 | 2010

2P154 異核種スピンラベル間の双極子相互作用EPRによる骨格筋アクチン-トロポミオシン間の距離分布計測(筋肉(筋蛋白質・収縮),第48回日本生物物理学会年会)

Keisuke Ueda; Chieko Kimura-Sakiyama; Shoji Ueki; Masao Miki; Toshiaki Arata


Biophysics | 2010

2P154 Distance distribution between actin and tropomyosin in skeletal muscle thin filament using isotopically different spin labels(The 48th Annual Meeting of the Biophysical Society of Japan)

Keisuke Ueda; Chieko Kimura-Sakiyama; Shoji Ueki; Masao Miki; Toshiaki Arata


生物物理 | 2009

2P-106 同位体スピンラベルを利用した骨格筋アクチン-トロポミオシン間の高精度距離解析(筋肉(筋蛋白質・収縮),第47回日本生物物理学会年会)

Keisuke Ueda; Chieko Kimura-Sakiyama; Masao Miki; Toshiaki Arata


Seibutsu Butsuri | 2009

2P-106 Highly accurate distance analysis between tropomyosin and actin of skeletal muscle using isotopically substituted spin label(Muscle,The 47th Annual Meeting of the Biophysical Society of Japan)

Keisuke Ueda; Chieko Kimura-Sakiyama; Masao Miki; Toshiaki Arata

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Yutaka Ueno

National Institute of Advanced Industrial Science and Technology

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