アスガルド古細菌
[Wikipedia|▼Menu]
□記事を途中から表示しています
[最初から表示]

^ a b c d Zaremba-Niedzwiedzka, Katarzyna; Caceres, Eva F.; Saw, Jimmy H.; Backstrom, Disa; Juzokaite, Lina; Vancaester, Emmelien; Seitz, Kiley W.; Anantharaman, Karthik et al. (11 January 2017). ⇒“Asgard archaea illuminate the origin of eukaryotic cellular complexity” (英語). Nature 541 (7637): 353?358. doi:10.1038/nature21031. ISSN 1476-4687. ⇒http://www.nature.com/articles/nature21031
^ a b c d Lu, Zhongyi; Fu, Ting; Li, Tianyi; Liu, Yang; Zhang, Siyu; Li, Jinquan; Dai, Junbiao; Koonin, Eugene V. et al. (2020-05-06). “Co-evolution of Eukaryotic-like Vps4 and ESCRT-III Subunits in the Asgard Archaea” (英語). bioRxiv: 2020.05.05.080093. doi:10.1101/2020.05.05.080093. https://www.biorxiv.org/content/10.1101/2020.05.05.080093v1. 
^ Williams, Tom A.; Cox, Cymon J.; Foster, Peter G.; Szoll?si, Gergely J.; Embley, T. Martin (2020-01). “Phylogenomics provides robust support for a two-domains tree of life” (英語). Nature Ecology & Evolution 4 (1): 138?147. doi:10.1038/s41559-019-1040-x. ISSN 2397-334X. https://www.nature.com/articles/s41559-019-1040-x. 
^ a b Paul-Adrian Bulzu, Adrian-Stefan Andrei, Michaela M Salcher, Maliheh Mehrshad, Keiichi Inoue, Hideki Kandori, Oded Beja, Rohit Ghai, Horia Banciu (2018). “The sunlit microoxic niche of the archaeal eukaryotic ancestor comes to light”. BioRxiv: 385732. doi:10.1101/385732. https://www.biorxiv.org/content/early/2018/08/06/385732. 
^ a b c d Ak?l, Caner; Robinson, Robert C. (2018-10-03). ⇒“Genomes of Asgard archaea encode profilins that regulate actin” (英語). Nature. doi:10.1038/s41586-018-0548-6. ISSN 0028-0836. ⇒http://www.nature.com/articles/s41586-018-0548-6
^ a b c Ak?l, Caner; Tran, Linh T.; Orhant-Prioux, Magali; Baskaran, Yohendran; Manser, Edward; Blanchoin, Laurent; Robinson, Robert C. (2020-08-18). “Insights into the evolution of regulated actin dynamics via characterization of primitive gelsolin/cofilin proteins from Asgard archaea” (英語). Proceedings of the National Academy of Sciences 117 (33): 19904?19913. doi:10.1073/pnas.2009167117. ISSN 0027-8424. PMID 32747565. https://www.pnas.org/content/117/33/19904. 
^ a b Neveu, Emilie; Khalifeh, Dany; Salamin, Nicolas; Fasshauer, Dirk (2019-10-19). “Prototypic SNARE proteins are encoded in the genomes of Heimdallarchaeota, potentially bridging the gap between the prokaryotes and eukaryotes” (英語). bioRxiv: 810531. doi:10.1101/810531. https://www.biorxiv.org/content/10.1101/810531v2. 
^ a b Stairs, Courtney W.; Ettema, Thijs J. G. (2020-05-18). ⇒“The Archaeal Roots of the Eukaryotic Dynamic Actin Cytoskeleton” (英語). Current Biology 30 (10): R521?R526. doi:10.1016/j.cub.2020.02.074. ISSN 0960-9822. ⇒http://www.sciencedirect.com/science/article/pii/S0960982220302815
^ a b c “Mythical origins of the actin cytoskeleton” (英語). Current Opinion in Cell Biology 68: 55?63. (2021-02-01). doi:10.1016/j.ceb.2020.08.011. ISSN 0955-0674. https://www.sciencedirect.com/science/article/pii/S0955067420301083. 
^ a b Lu, Zhongyi; Fu, Ting; Li, Tianyi; Liu, Yang; Zhang, Siyu; Li, Jinquan; Dai, Junbiao; Koonin, Eugene V. et al. (2020-06-30). “Coevolution of Eukaryote-like Vps4 and ESCRT-III Subunits in the Asgard Archaea” (英語). mBio 11 (3). doi:10.1128/mBio.00417-20. ISSN 2150-7511. PMID 32430468. https://mbio.asm.org/content/11/3/e00417-20. 
^ “Loading...” (英語). www.researchsquare.com. 2020年4月17日閲覧。
^ Lin, Weili; Fan, Lu; Xiao, Jing; Fang, Sa; Xu, Yanbing; Zhao, Rui; Qin, Rushi; Zhu, Ruixin (2020-03-11). A hot spring Asgard archaeon sheds light on the origin of eukaryotic endosomal system.. doi:10.21203/rs.3.rs-16808/v1. https://www.researchsquare.com/article/rs-16808/v1. 
^ Hatano, Tomoyuki; Palani, Saravanan; Papatziamou, Dimitra; Souza, Diorge P.; Salzer, Ralf; Tamarit, Daniel; Makwana, Mehul; Potter, Antonia et al. (2021-08-17). “Characterisation of the Ubiquitin-ESCRT pathway in Asgard archaea sheds new light on origins of membrane trafficking in eukaryotes” (英語). bioRxiv: 2021.08.17.456605. doi:10.1101/2021.08.17.456605. https://www.biorxiv.org/content/10.1101/2021.08.17.456605v1. 
^ Hatano, Tomoyuki; Palani, Saravanan; Papatziamou, Dimitra; Salzer, Ralf; Souza, Diorge P.; Tamarit, Daniel; Makwana, Mehul; Potter, Antonia et al. (2022-06-13). “Asgard archaea shed light on the evolutionary origins of the eukaryotic ubiquitin-ESCRT machinery” (英語). Nature Communications 13 (1): 3398. doi:10.1038/s41467-022-30656-2. ISSN 2041-1723. PMC 9192718. PMID 35697693. https://www.nature.com/articles/s41467-022-30656-2. 
^ オール・アバウト・サイエンス・ジャパン, NPO法人. “ ⇒10月9日:古細菌、アルケアから真核生物進化の機能的進化研究(Natureオンライン版掲載論文) 。AASJホームページ”. aasj.jp. 2018年10月13日閲覧。
^ Survery, Sabeen; Hurtig, Fredrik; Haq, Syed Razaul; Lindas, Ann-Christin; Chi, Celestine N. (2020-04-25). “Heimdallarchaea encodes profilin with eukaryotic-like actin regulation and polyproline binding” (英語). bioRxiv: 2020.04.23.051748. doi:10.1101/2020.04.23.051748. https://www.biorxiv.org/content/10.1101/2020.04.23.051748v1. 
^ Bulzu, Paul-Adrian; Andrei, Adrian-?tefan; Salcher, Michaela M.; Mehrshad, Maliheh; Inoue, Keiichi; Kandori, Hideki; Beja, Oded; Ghai, Rohit et al. (2019-07). “Casting light on Asgardarchaeota metabolism in a sunlit microoxic niche” (英語). Nature Microbiology 4 (7): 1129?1137. doi:10.1038/s41564-019-0404-y. ISSN 2058-5276. https://www.nature.com/articles/s41564-019-0404-y. 
^ a b “真核生物の祖先に最も近縁なアスガルド古細菌の持つ、 新しい光受容タンパク質の機能を解明 。物性研究所”. www.issp.u-tokyo.ac.jp. 2020年4月15日閲覧。
^ a b Inoue, Keiichi; Tsunoda, Satoshi P.; Singh, Manish; Tomida, Sahoko; Hososhima, Shoko; Konno, Masae; Nakamura, Ryoko; Watanabe, Hiroki et al. (2020-04-01). “Schizorhodopsins: A family of rhodopsins from Asgard archaea that function as light-driven inward H+ pumps” (英語). Science Advances 6 (15): eaaz2441. doi:10.1126/sciadv.aaz2441. ISSN 2375-2548. https://advances.sciencemag.org/content/6/15/eaaz2441. 

次ページ
記事の検索
おまかせリスト
▼オプションを表示
ブックマーク登録
mixiチェック!
Twitterに投稿
オプション/リンク一覧
話題のニュース
列車運行情報
暇つぶしWikipedia

Size:61 KB
出典: フリー百科事典『ウィキペディア(Wikipedia)
担当:undef