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诺奖文集 2017年诺贝尔医学奖 罗斯巴什

已有 955 次阅读 2022-9-18 07:20 |个人分类:诺贝尔奖|系统分类:论文交流



迈克尔·罗斯巴殊,1944年3月7日于美国密苏里州堪萨斯市出生,美国国家科学院院士,现为美国布兰戴斯大学生物学教授暨霍华德休斯医学研究所研究员。

2017年10月2日,获得了2017年诺贝尔生理学或医学奖

https://baike.baidu.com/item/%E8%BF%88%E5%85%8B%E5%B0%94%C2%B7%E7%BD%97%E6%96%AF%E5%B7%B4%E4%BB%80/15734132?fromModule=lemma_inlink





https://pubmed.ncbi.nlm.nih.gov/33634573/


https://pubmed.ncbi.nlm.nih.gov/?term=Rosbash+M&cauthor_id=33634573


summary-RosbashM-set.txt


http://www.pubmedplus.cn/P/SearchQuickResult?wd=63ca9596-1374-4648-9891-0296c74c4116

01.无法确认4 篇2.941%
02.20222 篇1.471%
03.20213 篇2.206%
04.20202 篇1.471%
05.20192 篇1.471%
06.20182 篇1.471%
07.20177 篇5.147%
08.20162 篇1.471%
09.20152 篇1.471%
10.20142 篇1.471%
11.20134 篇2.941%
12.20124 篇2.941%
13.20112 篇1.471%
14.20105 篇3.676%
15.20093 篇2.206%
16.20083 篇2.206%
17.20075 篇3.676%
18.20061 篇0.735%
19.20053 篇2.206%
20.20043 篇2.206%
21.20035 篇3.676%
22.20023 篇2.206%
23.20013 篇2.206%
24.20006 篇4.412%
25.19992 篇1.471%
26.19988 篇5.882%
27.19974 篇2.941%
28.19964 篇2.941%
29.19954 篇2.941%
30.19944 篇2.941%
31.19933 篇2.206%
32.19926 篇4.412%
33.19914 篇2.941%
34.19904 篇2.941%
35.19895 篇3.676%
36.19884 篇2.941%
37.19873 篇2.206%
38.19861 篇0.735%
39.19851 篇0.735%
40.19841 篇0.735%
01.neuron15 篇11.029%
02.cell14 篇10.294%
03.proc natl acad sci u s a14 篇10.294%
04.nature12 篇8.824%
05.embo j9 篇6.618%
06.genes dev7 篇5.147%
07.j biol rhythms6 篇4.412%
08.j neurosci6 篇4.412%
09.science6 篇4.412%
10.elife5 篇3.676%
01.美国105 篇77.206%
02.瑞士6 篇4.412%
03.中国5 篇3.676%
04.英国4 篇2.941%
05.德国2 篇1.471%
06.荷兰2 篇1.471%
07.以色列2 篇1.471%
08.阿根廷1 篇0.735%
09.澳大利亚1 篇0.735%
10.法国1 篇0.735%
01.中国杭州3 篇2.206%
02.中国北京2 篇1.471%
03.中国苏州1 篇0.735%
04.中国武汉1 篇0.735%
01.Animals132 篇97.059%
02.Circadian Rhythm128 篇94.118%
03.Drosophila Proteins91 篇66.912%
04.Drosophila melanogaster88 篇64.706%
05.Period Circadian Proteins54 篇39.706%
06.Nuclear Proteins49 篇36.029%
07.Gene Expression Regulation41 篇30.147%
08.Drosophila38 篇27.941%
09.Biological Clocks36 篇26.471%
10.Mutation36 篇26.471%

常用聚类 分析报告导出

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www.newpubmed.com

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Review

 

Angew Chem Int Ed Engl

2021 Apr 12;60(16):8650-8666.

 doi: 10.1002/anie.202015199. Epub 2021 Feb 26.

Circadian Rhythms and the Transcriptional Feedback Loop (Nobel Lecture)*

Michael Rosbash 1

Affiliations expand

Abstract

Circadian rhythms are present in most if not all animals, plants, and even photosynthetic cyanobacteria. These cyanobacterial clocks as well as plant clocks are very different from those of animals, with no credible homology between the different clock proteins. Therefore circadian rhythms probably emerged multiple times in evolution, which underscores their importance.

Keywords: Nobel lecture; circadian rhythm; period protein.

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References


    1. P. E. Hardin, S. Panda, Curr. Opin. Neurobiol. 2013, 23, 724-731.


    1. T. Kondo, C. A. Strayer, R. D. Kulkarni, W. Taylor, M. Ishiura, S. S. Golden, C. H. Johnson, Proc. Natl. Acad. Sci. USA 1993, 90, 5672-5676.


    1. M. Rosbash, PLoS Biol. 2009, 7, e1000062.


    1. S. Daan, A History of Chronobiological Concepts. In The Circadian Clock (Ed.: U. Albrecht), Springer, New York, 2010, pp. 1-35.


    1. E. Bunning, Ber. Dtsch. Bot. Ges. 1935, 53, 594-623.

Show all 117 references

Publication types

  • Research Support, Non-U.S. Gov't

  • Review

MeSH terms

  • Animals

  • Circadian Rhythm / genetics*

  • Feedback, Physiological*

  • Humans

Related information

Grant support

LinkOut - more resources




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