ƒgƒbƒvƒy[ƒW >> Œ¤‹†‹ÆÑJapanese page only

Œ¤‹†‹ÆÑ

[‘SŒ]i947Œj ‚ð“o˜^‡•\Ž¦


[ <<BACK ][ TOP ][ NEXT>> ]

“o˜^ŽÒ–¼ ˜V–Ø@¬–« Ží•Ê ƒŒƒrƒ…[E‘à ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ ƒCƒIƒ“ƒ`ƒƒƒlƒ‹ƒ^ƒ“ƒpƒNŽ¿‚Ì\‘¢•Ï‰»‚ð’Ç‚¤
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ o‰H@‹B‹v Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Targeting of Polyplex to Human Hepatic Cells by Bio-nanocapsules, Hepatitis B Virus Surface Antigen L Protein Particles
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ ˆê•ªŽqŒuŒõŠÏŽ@–@‚ð—p‚¢‚½ƒ^ƒ“ƒpƒNŽ¿ƒtƒH[ƒ‹ƒfƒBƒ“ƒO‚̉ð–¾`Single Molecule Observation on the Folding Process of Proteins`
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Time-Resolved Small-Angle X-ray Scattering Study of the Folding Dynamics of Barnase
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É“ŠeÏ‚Ýn

“o˜^ŽÒ–¼ o‰H@‹B‹v Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ RGD-based active targeting of novel polycation liposomes bearing siRNA for cancer treatment
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ "Hydration-State Change of horse Heart Cytochrome c Corresponding to Trifluoroacetic-Acid-Induced unfolding
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê ƒŒƒrƒ…[E‘à ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Staring at a Protein : Ensemble and Single-Molecule Inbestigations on Protein-Folding Dynamics
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2008
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Hierarchical folding mechanism of apomyoglobin revealed by ultra-fast H/D exchange coupled with 2D NMR
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê ‘Ð ”­•\”N 2009
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ ’`”’Ž¿‚̉Ž‹‰»‚ƃ_ƒCƒiƒ~ƒYƒ€‡@Fin vitroŒn‚Å‚ÌŒ¤‹†
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê ‘Ð ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Watching Dynamical Events in Protein Folding in the Time Domain from Submilliseconds to Seconds: Continuous-Flow Rapid-Mixing Infrared Spectroscopy
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ‚‹´@‘ Ží•Ê ‘Ð ”­•\”N 2010
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ ƒ^ƒ“ƒpƒNŽ¿‚Ì•Ï«‚ƃtƒH[ƒ‹ƒfƒBƒ“ƒO
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ o‰H@‹B‹v Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Development of a miR-92a delivery system for antiangiogenesis-based cancer therapy
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ o‰H@‹B‹v Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Systemic delivery of small interfering
RNA by use of targeted polycation liposomes for cancer therapy
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ o‰H@‹B‹v Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Dicetyl phosphate-tetraethylenepentamine-based Liposomes for Systemic siRNA Delivery
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ Έä@–M•F Ží•Ê ƒŒƒrƒ…[E‘à ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ æ’[“I‚ÈŒuŒõ‘ŠŠÖ•ªŒõ–@‚ð‰ž—p‚µ‚½¶‘Ì•ªŽq‚̃_ƒCƒiƒ~ƒNƒX‚̉ðÍ
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ A theoretical study on excited state double proton transfer reaction of a 7-azaindole dimer: an ab initio potential energy surface and its empirical valence bond model.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ QM/MM reweighting free energy SCF for geometry optimization on extensive free energy surface of enzymatic reaction
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É“ŠeÏ‚Ýn

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Crystal structure of the channelrhodopsin light-gated cation channel
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Crucial role of protein flexibility in formation of a stable reaction transition state in an alpha-amylase catalysis
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É“ŠeÏ‚Ýn

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Molecular mechanism of ATP hydrolysis in F1-ATPase revealed by molecular simulations and single molecule observations
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É“ŠeÏ‚Ýn

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Structural and spectral characterizations of C1C2 channelrhodopsin and its mutants by molecular simulations
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ The reaction mechanism of Claisen rearrangement obtained by transition state spectroscopy and single direct-dynamics trajectory
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê ‘Ð ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ y‘f”½‰ž‚ƶ‘Ì•ªŽq‹@”\‚Ì•ªŽqƒVƒ~ƒ…ƒŒ[ƒVƒ‡ƒ“
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ —Ñ@d•F Ží•Ê ‘Ð ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ ƒ^ƒ“ƒpƒNŽ¿‚̶•¨Šw“I‹@”\‚Ɖ»Šw”½‰ž
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2010
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Simultaneous optical and electrical recording of single drug bonding to single ion channel proteins.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Channels formed by amphotericin B covalent dimers exhibit rectification.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Direct Manipulation of a Single Potassium Channel Gate with an Atomic Force Microscope Probe.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2011
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ The role of the KcsA channel cytoplasimic domain in pH-dependent gating.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê Œ´’˜˜_•¶ ”­•\”N 2013
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ Uncovering the Protein Translocon at the Chloroplast Inner Envelope Membrane.
ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen

“o˜^ŽÒ–¼ ˆäo@“O Ží•Ê ƒŒƒrƒ…[E‘à ”­•\”N 2012
’˜ŽÒ–¼
ƒ^ƒCƒgƒ‹ u‚¿‚©‚çv‚ŃCƒIƒ“ƒ`ƒƒƒlƒ‹‚Ì‹@”\‚ð§Œä‚·‚é.

ŒfÚŽGŽ
mƒjƒ…[ƒXƒŒƒ^[‚É–¢“Šen


[ <<BACK ][ TOP ][ NEXT>> ]

(27/32)

mŒ¤‹†‹Æуgƒbƒvnm‘S‚Ẵf[ƒ^‚ðV’…‡‚ÉŒ©‚énmV‹K“o˜^ƒy[ƒWn


Database Factory