Journal Article10.1146/ANNUREV.BIOCHEM.74.010904.153721
Eukaryotic cytosine methyltransferases.
Mary G. Goll,Timothy H. Bestor +1 more
2.1K
TL;DR: There are multiple families of DNA (cytosine-5) methyltransferases in eukaryotes, and each family appears to be controlled by different regulatory inputs.
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Abstract: Ke yW ords 5-methylcytosine, DNA methyltransferase, transposons, genomic imprinting ■ Abstract Large-genome eukaryotes use heritable cytosine methylation to silence promoters, especially those associated with transposons and imprinted genes. Cytosine methylation does not reinforce or replace ancestral gene regulation pathways but instead endows methylated genomes with the ability to repress specific promoters in a manner that is buffered against changes in the internal and external environment. Recent studies have shown that the targeting of de novo methylation depends on multiple inputs; these include the interaction of repeated sequences, local states of histone lysine methylation, small RNAs and components of the RNAi pathway, and divergent and catalytically inert cytosine methyltransferase homologues that have acquired regulatory roles. There are multiple families of DNA (cytosine-5) methyltransferases in eukaryotes, and each family appears to be controlled by different regulatory inputs. Sequence-specific DNA- binding proteins, which regulate most aspects of gene expression, do not appear to be involved in the establishment or maintenance of genomic methylation patterns.
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Age-Related Genomic Hypomethylation
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TL;DR: Comparative genomic analysis indicates vertebrate expansions of genes associated with neuronal function, with tissue-specific developmental regulation, and with the hemostasis and immune systems are indicated.
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WebLogo: A Sequence Logo Generator
TL;DR: WebLogo generates sequence logos, graphical representations of the patterns within a multiple sequence alignment that provide a richer and more precise description of sequence similarity than consensus sequences and can rapidly reveal significant features of the alignment otherwise difficult to perceive.
DNA methyltransferases Dnmt3a and Dnmt3b are essential for de novo methylation and mammalian development.
TL;DR: It is demonstrated that two recently identified DNA methyltransferases, DnMT3a and Dnmt3b, are essential for de novo methylation and for mouse development and play important roles in normal development and disease.
6.2K
The Sequence of the Human Genome
J. Craig Venter,Mark Raymond Adams,Eugene W. Myers,Peter W. Li,Richard J. Mural,Granger G. Sutton,Hamilton O. Smith,Mark Yandell,Cheryl A. Evans,Robert A. Holt,Jeannine D. Gocayne,Peter Amanatides,Richard M. Ballew,Daniel H. Huson,Jennifer R. Wortman,Qing Zhang,Chinnappa D. Kodira,Xiangqun H. Zheng,Lin Chen,Marian P. Skupski,Gangadharan Subramanian,Paul Thomas,Jinghui Zhang,George L. Gabor Miklos,Catherine R. Nelson,Samuel Broder,Andrew G. Clark,J. H. Nadeau,Victor A. McKusick,Norton D. Zinder,Arnold J. Levine,Richard J. Roberts,M. I. Simon,Carolyn W. Slayman,Michael W. Hunkapiller,Randall Bolanos,Arthur L. Delcher,Ian M. Dew,Daniel Fasulo,Michael Flanigan,Liliana Florea,Aaron L. Halpern,Sridhar Hannenhalli,Saul A. Kravitz,Samuel Levy,Clark M. Mobarry,Knut Reinert,Karin A. Remington,Jane Abu-Threideh,Ellen M. Beasley,Kendra Biddick,Vivien Bonazzi,Rhonda Brandon,Michele Cargill,Ishwar Chandramouliswaran,Rosane Charlab,Kabir Chaturvedi,Zuoming Deng,Valentina Di Francesco,Patrick Dunn,Karen Eilbeck,Carlos Evangelista,Andrei Gabrielian,Weiniu Gan,Wangmao Ge,Fangcheng Gong,Zhiping Gu,Ping Guan,Thomas J. Heiman,Maureen E. Higgins,Rui-Ru Ji,Zhaoxi Ke,Karen A. Ketchum,Zhongwu Lai,Yiding Lei,Zhenya Li,Jiayin Li,Yong Liang,Xiaoying Lin,Fu Lu,Gennady V. Merkulov,Natalia Milshina,Helen M. Moore,Ashwinikumar K Naik,Vaibhav A. Narayan,Beena Neelam,Deborah Nusskern,Douglas B. Rusch,Steven L. Salzberg,Wei Shao,Bixiong Chris Shue,Jingtao Sun,Zhen Yuan Wang,Aihui Wang,Xin Wang,Jian Wang,Ming-Hui Wei,Ron Wides,Chunlin Xiao,Chunhua Yan,Alison Yao,Jane Ye,Ming Zhan,Weiqing Zhang,Hongyu Zhang,Qi Zhao,Liansheng Zheng,Fei Zhong,Wenyan Zhong,Shiaoping C. Zhu,Shaying Zhao,Dennis A. Gilbert,Suzanna Baumhueter,Gene Spier,Christine Carter,Anibal Cravchik,Trevor Woodage,Feroze Ali,Huijin An,Aderonke Awe,Danita Baldwin,Holly Baden,Mary Barnstead,Ian Barrow,Karen Beeson,Dana A. Busam,Amy Carver,Ming Lai Cheng,Liz Curry,Steve Danaher,Lionel Davenport,Raymond Desilets,Susanne Dietz,Kristina Dodson,Lisa Doup,Steven Ferriera,Neha Garg,Andres Gluecksmann,Brit J. Hart,Jason Haynes,Charles Haynes,Cheryl Heiner,Suzanne Hladun,Damon Hostin,Jarrett Houck,Timothy Howland,Chinyere Ibegwam,Jeffery Johnson,Francis Kalush,Lesley Kline,Shashi Koduru,Amy Love,Felecia Mann,David May,Steven McCawley,Tina C. McIntosh,Ivy McMullen,Mee Moy,Linda Moy,Brian Murphy,Keith Nelson,Cynthia Pfannkoch,Eric Pratts,Vinita Puri,Hina Qureshi,Matthew Reardon,Robert Rodriguez,Yu-Hui Rogers,Deanna Romblad,Bob Ruhfel,Richard T. Scott,Cynthia Sitter,Michelle Smallwood,Erin Stewart,Renee Strong,Ellen Suh,Reginald Thomas,Ni Ni Tint,Sukyee Tse,Claire Vech,Gary Wang,Jeremy Wetter,Sherita Williams,Monica Williams,Sandra Windsor,Emily Winn-Deen,Keriellen Wolfe,Jayshree Zaveri,Karena Zaveri,Josep F. Abril,Roderic Guigó,Michael J. Campbell,Kimmen Sjölander,Brian Karlak,Anish Kejariwal,Huaiyu Mi,Betty Lazareva,Thomas Hatton,Apurva Narechania,Karen Diemer,Anushya Muruganujan,Nan Guo,Shinji Sato,Vineet Bafna,Sorin Istrail,Ross Lippert,Russell Schwartz,Brian P. Walenz,Shibu Yooseph,David Allen,Anand Basu,James Baxendale,Louis Blick,Marcelo Caminha,John Carnes-Stine,Parris Caulk,Yen-Hui Chiang,My Coyne,Carl Dahlke,Anne Deslattes Mays,Maria Dombroski,Michael Donnelly,Dale Ely,Shiva Esparham,Carl Fosler,Harold Gire,Stephen Glanowski,Kenneth Glasser,Anna Glodek,Mark Gorokhov,Ken Graham,Barry Gropman,Michael Harris,Jeremy Heil,Scott Henderson,Jeffrey Hoover,Donald Jennings,Catherine Jordan,James Jordan,John Kasha,Leonid Kagan,Cheryl L. Kraft,Alexander Levitsky,Mark Lewis,Xiangjun Liu,John Lopez,Daniel Ma,William H. Majoros,Joe McDaniel,Sean C. Murphy,Matthew Newman,Trung Hieu Nguyen,Ngoc Nguyen,Marc Nodell,Sue Pan,Jim Peck,Marshall Peterson,William Rowe,Robert Sanders,John Scott,Michael Simpson,Thomas J. Smith,Arlan Sprague,Timothy B. Stockwell,Russell Turner,Eli Venter,Mei Wang,Meiyuan Wen,David Wu,Mitchell Wu,Ashley Xia,Ali Zandieh,Xiaohong Zhu +272 more
TL;DR: Comparative genomic analysis indicates vertebrate expansions of genes associated with neuronal function, with tissue-specific developmental regulation, and with the hemostasis and immune systems are indicated.
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