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Featured researches published by Rumi Shiba.


Biophysics | 2011

Systematic alanine insertion reveals the essential regions that encode structure formation and activity of dihydrofolate reductase

Rumi Shiba; Mika Umeyama; Sayaka Tsukasa; Hironari Kamikubo; Yoichi Yamazaki; Mariko Yamaguchi; Masahiro Iwakura; Mikio Kataoka

Decoding sequence information is equivalent to elucidating the design principles of proteins. For this purpose, we conducted systematic alanine insertion analysis to reveal the regions in the primary structure where the sequence continuity cannot be disrupted. We applied this method to dihydrofolate reductase (DHFR), and examined the effects of alanine insertion on structure and the enzymatic activity by solubility assay and trimethoprim resistance, respectively. We revealed that DHFR is composed of “Structure Elements”, “Function Elements” and linkers connecting these elements. The “Elements” are defined as regions where the alanine insertion caused DHFR to become unstructured or inactive. Some “Structure Elements” overlap with “Function Elements”, indicating that loss of structure leads to loss of function. However, other “Structure Elements” are not “Function Elements”, in that alanine insertion mutants of these regions exhibit substrate- or inhibitor-induced folding. There are also some “Function Elements” which are not “Structure Elements”; alanine insertion into these elements deforms the catalytic site topology without the loss of tertiary structure. We hypothesize that these elements are involved essential interactions for structure formation and functional expression. The “Elements” are closely related to the module structure of DHFR. An “Element” belongs to a single module, and a single module is composed of some number of “Elements.” We propose that properties of a module are determined by the “Elements” it contains. Systematic alanine insertion analysis is an effective and unique method for deriving the regions of a sequence that are essential for structure formation and functional expression.


Chemical Communications | 2013

Fingerprint signatures of lanthanide circularly polarized luminescence from proteins covalently labeled with a β-diketonate europium(III) chelate

Junpei Yuasa; Tomoko Ohno; Hiroyuki Tsumatori; Rumi Shiba; Hironari Kamikubo; Mikio Kataoka; Yasuchika Hasegawa; Tsuyoshi Kawai


publisher | None

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生物物理 | 2014

3P045 Staphylococcal nuclease とΔ44-49 変異体の構造揺らぎの解析:酵素活性への洞察(01B. 蛋白質:構造機能相関,ポスター,第52回日本生物物理学会年会(2014年度))

Kana Fuji; Hiroshi Fujisaki; Tadaomi Furuta; Rumi Shiba; Mikito Toda


Seibutsu Butsuri | 2014

3P045 Analysis of the structural fluctuation in Staphylococcal nuclease and its Δ44-49 mutant: Insight into the enzymatic activity(01B. Protein: Structure & Function,Poster,The 52nd Annual Meeting of the Biophysical Society of Japan(BSJ2014))

Kana Fuji; Hiroshi Fujisaki; Tadaomi Furuta; Rumi Shiba; Mikito Toda


生物物理 | 2013

1P063 Staphylococcal nucleaseにおけるマイクロ秒スケールの主鎖の運動(01C. 蛋白質:物性,ポスター,日本生物物理学会年会第51回(2013年度))

Takahiro Matsumoto; Mariko Yamaguchi; Rumi Shiba; Hironari Kamikubo; Yoichi Yamazaki; Mikio Kataoka


Seibutsu Butsuri | 2013

1P063 Main-chain dynamics of staphylococcal nuclease in microsecond timescale(01C. Protein:Property,Poster)

Takahiro Matsumoto; Mariko Yamaguchi; Rumi Shiba; Hironari Kamikubo; Yoichi Yamazaki; Mikio Kataoka


Seibutsu Butsuri | 2013

3P019 The role of the flexible loop in Staphylococcal nuclease on its catalytic activity(01A. Protein: Structure,Poster)

Rumi Shiba; Hironari Kamikubo; Yutaka Maruyama; Junko Yunoki; Keiichi Fukuyama; Yoichi Yamazaki; Mariko Yamaguchi; Mikio Kataoka


生物物理 | 2012

1PT124 Staphylococcal nucleaseの触媒活性におけるループの役割(日本生物物理学会第50回年会(2012年度))

Rumi Shiba; Hironari Kamikubo; Yoichi Yamazaki; Mariko Yamaguchi; Mikio Kataoka


生物物理 | 2011

1H1536 網羅的アラニン挿入変異解析法によるジヒドロ葉酸還元酵素の機能エレメントの分類(蛋白質_物性 2,第49回日本生物物理学会年会)

Rumi Shiba; Hironari Kamikubo; Mika Umeyama; Sayaka Tsukasa; Yoichi Yamazaki; Mariko Yamaguchi; Masahiro Iwakura; Mikio Kataoka

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Hironari Kamikubo

Nara Institute of Science and Technology

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Mikio Kataoka

Nara Institute of Science and Technology

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Yoichi Yamazaki

Nara Institute of Science and Technology

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Masahiro Iwakura

National Institute of Advanced Industrial Science and Technology

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Mika Umeyama

Nara Institute of Science and Technology

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Sayaka Tsukasa

Nara Institute of Science and Technology

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Mikito Toda

Nara Women's University

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Tadaomi Furuta

Tokyo Institute of Technology

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