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P1 |
Activity switching of an antifreeze protein from Lolium perenne |
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Joana Gronow, Hauke Kobarg, Vijayanand Chandrasekaran, Koli Basu, Robert Campell, Peter Davies, Thisbe K. Lindhorst, Frank D. Sönnichsen |
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P2 |
Switchable Proteins – The Trp-Cage as novel switching unit |
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Matthias Lipfert |
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P3 |
Photoswitchable Type I like Antifreeze Proteins |
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Hauke Kobarg |
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P4 |
Stabilizing α-Helix Peptide from Antifreeze Protein I by Main Chain Hydrogen Bond Surrogate |
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Kannika Thongkhao, Frank D. Sönnichsen |
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P5 |
Influence of temperature and pH value on the recrystallization inhibition activity of fish ice structuring protein |
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Andreas Leiter, Volker Gaukel |
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P6 |
Anti-freezing Protein Inhibits Ice Nucleation: Another Mechanism for the Survival of Living Organisms in Subzero Environments |
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Jianjun Wang |
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P7 |
Synergistic effects between hydrocolloids and antifreeze proteins from fish on the recrystallization of ice in sucrose solutions |
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Volker Gaukel, Andreas Leiter, Walter E.L. Spieß |
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P8 |
Chemical synthesis and structural analysis of the antifreeze agent xylomannan fragment from Upis ceramboides |
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Akihiro Ishiwata, Ayaka Sakurai, Yoshiyuki Nishimiya, Sakae Tsuda, Yukishige Ito |
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P9 |
Ice-Binding Protein (IBP) Improved the Cryopreservation Efficiency of Diatoms |
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Tae Kyung Hwang, Hye Yeon Koh, Yong Cheol Kang, Hak Jun Kim |
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P10 |
Application of antifreeze glycoprotein for macroporous ceramic products prepared by gelation freezing method |
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Manabu Fukushima, Sakae Tsuda, Yu-ichi Yoshizawa |
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P11 |
On the depression of ice/water interface temperature by adding antifreeze protein and ions to water in a narrow space |
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Yoshimichi Hagiwara, Hiroki Aomatsu |
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P12 |
Enhancement of the depression of ice/water interface temperature by heating polypeptide solutions |
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Naoto Nishi, Yoshimichi Hagiwara, Tomonori Waku, Naoki Tanaka |
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P13 |
Plant-derived antifreeze protein and its application in food preservation under frozen conditions |
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Naoki Arai, Gabsoo Do, Hidehisa Kawahara, Yasuyuki Sagara |
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P14 |
Antifreeze protein dendrimers: when two (or more) heads are better than one |
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Corey Stevens, Ran Drori, Shiran Zalis, Ido Braslavsky, Peter Davies |
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P15 |
Trapping of water molecules by cations and sites of winter flounder antifreeze protein adsorbed on an ice pyramidal facet |
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Koh TERAI, Yuta NOHARA, Yoshimichi HAGIWARA |
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P16 |
Characteristics of antifreeze proteins as supercooling-promoting substances |
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Chikako Kuwabara, Yoshiyuki Nishimiya, Sakae Tsuda, Keita Arakawa, Seizo Fujikawa |
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P17 |
Effects of type-III AFP on growth rates of CO2 clathrate-hydrate film |
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Tsutomu Uchida, Ryo Ohmura, Sakae Tsuda |
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P18 |
Backbone Dynamics of the Antifreeze-like Domain of Human Sialic Acid Synthase and Fish Type III Antifreeze Protein |
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Yong-Geun Choi, Joon-Hwa Lee |
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P19 |
Type I AFP of cottid fishes distributing from the Arctic to the North Pacific Ocean |
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Aya Yamazaki, Yuichi Hanada, Sakae Tsuda, Hiroyuki Munehara |
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P20 |
NMR structure of a defective isoform and its activity-improved variant of type III antifreeze protein form Zoarces elongates Kner |
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Hiroyuki Kumeta, Kenji Ogura, Yoshiyuki Nishimiya, Ai Miura, Fuyuhiko Inagaki, Sakae Tsuda |
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P21 |
A Type I Antifreeze Protein exhibits an extremely high thermal hysteresis |
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Sheikh Mahatabuddin, Kazunari Ishihara, Yuichi Hanada, Ai Miura, Hidemesa Kondo, Sakae Tsuda |
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P22 |
Dendrimers at play as an antifreeze plastic |
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Luuk Olijve, Bas De Waal, Bert Meijer, Ilja Voets |
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P23 |
Crystal structures of the wild type and A20V-mutant for the Anti Freeze Protein AFP6 Derived from Japanese fish Zoarces elongatus Kner |
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Motoyasu Adachi, Takashi Ohhara, Yoshiyuki Nishimiya, Hidemasa Kondo, Rumi Shimizu, Taro Tamada, Sakae Tsuda, Ryota Kuroki |
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P24 |
Structural studies of bacterial ice nucleation proteins and their relevance for atmospheric processes |
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MeiLee Ling, Tina Santl Temkiv, Kai Finster, Thomas Boesen |
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P25 |
An Ice Nucleation Protein from an Alpine Tussock |
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Craig J Marshall, David J Wharton, Haoyu Xiong |
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P26 |
Growth mechanism of ice basal planes in antifreeze protein type III solution |
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Takaaki Inada, Toshie Koyama, Kunio Funakoshi |
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P27 |
Antifreeze activities of an anaerobic bacterium isolated from permafrost |
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Yoshitaka Yoshimura, Sachiya Obata, Ayumi Takeuchi, Victoria A. Shcherbakova, Yuichi Hanada, Tamotsu Hoshino, Sakae Tsuda, Hidemasa Kondo |
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P28 |
Towards large scale expression of hyperactive AFPs for food and cryobiology applications |
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Vera Syrotynska, Maya Bar-Dolev, Ido Braslavsky |
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P29 |
Ice Recrystallization Inhibition by Ice Binding Proteins |
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Shiran Zalis, Maya Bar Dolev, Victor Yashunsky, Ido Braslavsky |
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P30 |
On the correlation between adsorption rate of AFPIII to ice and thermal hysteresis: an experimental study |
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Ran Drori, Peter L. Davies, Ido Braslavsky |
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P31 |
Disulfide-braced solenoid fold predicted for new antifreeze protein from a fly |
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Koli Basu, Laurie, A. Graham, Robert, L. Campbell, Peter L. Davies |
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P32 |
Novel role for an ice-binding protein - adhering an organism to ice |
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Shuaiqi Guo, Tyler, D.R. Vance, Robert, L. Campbell, Peter, L. Davies, Ido Braslavsky, Maya Bar-Dolev |
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P33 |
The ice recrystallization inhibition by AntiFreeze proteins: a game for many players |
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Federico Lanciai, Luigi Bubacco |
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P34 |
Mutagenesis study of an antifreeze protein isoform from a snow-mold fungus, Typhula ishikariensis |
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Jing Cheng, Yuichi Hanada, Hidemasa Kondo, Sakae Tsuda |
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P35 |
A study on cold temperature acclimation of Cyprinus Carpio (Common Carp) in upland regions of Himalayas |
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Chirag Goel, A Barat, P K Sahoo |
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P36 |
Molecular modeling of biomimetic antifreeze polymers |
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Emmanuel Alaina, Matthew Gibson, Rebecca Notman |
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P37 |
An ice-nucleation protein fragment with hyperactive antifreeze protein activity |
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Evan Andrin, Corey Stevens, Ido Braslavsky, Peter L. Davies |
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P38 |
Is the anchored clathrate water hypothesis a general mechanism for IBP binding to ice? |
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Tianjun Sun, Robert L. Campbell, Peter L. Davies |
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P39 |
Stress responsibility and structure of intracellular antifreeze protein from Antarctic marine diatom |
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Yunho Gwak, Woongsic Jung, Yew Lee, Ji Sook Kim, Jae-kyung Hyum, EonSeon Jin |
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P40 |
Development of antifreeze protein coating method on aluminum surface and their anti-frost ability |
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Yunho Gwak, Ji-in Park, Hong Suk Kim, Young-Pil Kim, EonSeon Jin |