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^ Norihiro Maeda; Tamotsu Kanai; Haruyuki Atomi; Tadayuki Imanaka (August 30, 2002). ⇒“The Unique Pentagonal Structure of an Archaeal Rubisco Is Essential for Its High Thermostability”. The Journal of Biological Chemistry 277: 31656-31662. ⇒http://www.jbc.org/content/277/35/31656.full?sid=0a0507d0-ede5-4fa5-ae62-188fba3e32c1
^ Haruyuki Atomi; Rie Matsumi; Tadayuki Imanaka (July 2004). ⇒“Reverse Gyrase Is Not a Prerequisite for Hyperthermophilic Life”. Journal of Bacteriology 186 (14): 4829-4833. doi:10.1128/JB.186.14.4829-4833.2004. ⇒http://jb.asm.org/content/186/14/4829.short
^ Hiroki Higashibata; Shinsuke Fujiwara; Satoshi Ezaki; Masahiro Takagi; Kiichi Fukui; Tadayuki Imanaka (2000). ⇒“Effect of polyamines on histone-induced DNA compaction of hyperthermophilic archaea”. Journal of Bioscience and Bioengineering 89 (1): 103?106. doi:10.1016/S1389-1723(00)88061-5. ⇒http://www.sciencedirect.com/science/article/pii/S1389172300880615
^ Boyd ES; Pearson A; Pi Y; Li WJ; Zhang YG; He L; Zhang CL; Geesey GG (2011 Jan). ⇒“Temperature and pH controls on glycerol dibiphytanyl glycerol tetraether lipid composition in the hyperthermophilic crenarchaeon Acidilobus sulfurireducens”. Extremophiles 15 (1): 59-65. doi:10.1007/s00792-010-0339-y. .mw-parser-output cite.citation{font-style:inherit;word-wrap:break-word}.mw-parser-output .citation q{quotes:"\"""\"""'""'"}.mw-parser-output .citation.cs-ja1 q,.mw-parser-output .citation.cs-ja2 q{quotes:"「""」""『""』"}.mw-parser-output .citation:target{background-color:rgba(0,127,255,0.133)}.mw-parser-output .id-lock-free a,.mw-parser-output .citation .cs1-lock-free a{background:url("//upload.wikimedia.org/wikipedia/commons/6/65/Lock-green.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-limited a,.mw-parser-output .id-lock-registration a,.mw-parser-output .citation .cs1-lock-limited a,.mw-parser-output .citation .cs1-lock-registration a{background:url("//upload.wikimedia.org/wikipedia/commons/d/d6/Lock-gray-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .id-lock-subscription a,.mw-parser-output .citation .cs1-lock-subscription a{background:url("//upload.wikimedia.org/wikipedia/commons/a/aa/Lock-red-alt-2.svg")right 0.1em center/9px no-repeat}.mw-parser-output .cs1-ws-icon a{background:url("//upload.wikimedia.org/wikipedia/commons/4/4c/Wikisource-logo.svg")right 0.1em center/12px no-repeat}.mw-parser-output .cs1-code{color:inherit;background:inherit;border:none;padding:inherit}.mw-parser-output .cs1-hidden-error{display:none;color:#d33}.mw-parser-output .cs1-visible-error{color:#d33}.mw-parser-output .cs1-maint{display:none;color:#3a3;margin-left:0.3em}.mw-parser-output .cs1-format{font-size:95%}.mw-parser-output .cs1-kern-left{padding-left:0.2em}.mw-parser-output .cs1-kern-right{padding-right:0.2em}.mw-parser-output .citation .mw-selflink{font-weight:inherit}PMID 21125411. ⇒http://www.ncbi.nlm.nih.gov/pubmed/21125411
^ a b Yasuhiko MATSUNO; Akihiko SUGAI; Hiroki HIGASHIBATA; Wakao FUKUDA; Katsuaki; UEDA Ikuko UDA; Itaru SATO; Toshihiro ITOH et al. (2009). ⇒“Effect of Growth Temperature and Growth Phase on the Lipid Composition of the Archaeal Membrane from Thermococcus kodakaraensis”. Bioscience, Biotechnology, and Biochemistry 73 (1): 104-108. doi:10.1271/bbb.80520. ⇒http://www.tandfonline.com/doi/abs/10.1271/bbb.80520
^ Y Koga; M Nishihara; H Morii; M Akagawa-Matsushita (1 March 1993). ⇒“Ether polar lipids of methanogenic bacteria: structures, comparative aspects, and biosyntheses.”. Microbiol. Mol. Biol. Rev. 57 (1): 164-182. ⇒http://mmbr.asm.org/content/57/1/164.short
^ Toshiko Tanaka; Ryosuke Mega; Kwang Kim; Akeo Shinkai; Ryoji Masui; Seiki Kuramitsu; Noriko Nakagawa (March 2012). ⇒“A non-cold-inducible cold shock protein homolog mainly contributes to translational control under optimal growth conditions”. FEBS Journal 279 (6): 1014?1029. doi:10.1111/j.1742-4658.2012.08492.x. ⇒http://onlinelibrary.wiley.com/doi/10.1111/j.1742-4658.2012.08492.x/abstract
^ 今井亮三; 金明姫 (2014). ⇒“低温ショックドメインタンパク質の機能の保存性と多様性:植物からの視点”. 生化学 86 (4): 474?8. ⇒http://www.jbsoc.or.jp/seika/wp-content/uploads/2015/03/86-04-08.pdf
^ Le Gao; Tadayuki Imanaka; Shinsuke Fujiwara (August 2015). ⇒“A Mutant Chaperonin That Is Functional at Lower Temperatures Enables Hyperthermophilic Archaea To Grow under Cold-Stress Conditions”. J. Bacteriol. 197: 2642-2652. doi:10.1128/JB.00279-15. ⇒http://jb.asm.org/content/197/16/2642.abstract
^ a b Eriko Nagaoka; Ryota Hidese; Tadayuki Imanaka; Shinsuke Fujiwara (August 2013). ⇒“Importance and Determinants of Induction of Cold-Induced DEAD RNA Helicase in the Hyperthermophilic Archaeon Thermococcus kodakarensis”. J. Bacteriol. 195 (15): 3442-3450. doi:10.1128/JB.00332-13. ⇒http://jb.asm.org/content/195/15/3442.short
^ 秀瀬涼太; 藤原伸介 (2015). “好熱菌の低温ストレス耐性”. 生物工学会誌 93 (8): 464?7. 

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最も原始的な細菌発見 生命の起源に迫る「生きた化石」 - SankeiBiz 2012年1月18日
- ウェイバックマシン(2012年3月6日アーカイブ分)

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