Background Image
Table of Contents Table of Contents
Previous Page  74 / 91 Next Page
Information
Show Menu
Previous Page 74 / 91 Next Page
Page Background

74

R. Dahiya,

Small dsRNAs induce transcriptional activation in human cells,

Proceedings of the National Academy of Sciences USA, 103 (November 14, 2006): 17337

42; A. Pagano, M. Castelnuovo, F. Tortelli, R. Ferrari, G. Dieci, and R. Cancedda,

New small nuclear RNA gene-like transcriptional units as sources of regulatory

transcripts,

PLoS Genetics, 3(February, 2007): e1; L. N. van de Lagemaat, J. R.

Landry, D. L. Mager, and P. Medstrand,

Transposable elements in mammals promote

regulatory variation and diversification of genes with specialized functions,

Trends

in Genetics, 19 (October, 2003): 530

36; S. R. Donnelly, T. E. Hawkins, and S. E.

Moss,

A Conserved nuclear element with a role in mammalian gene regulation,

Human

Molecular Genetics, 8 (1999): 1723

28; C. A. Dunn, P. Medstrand, and D. L. Mager,

An

endogenous retroviral long terminal repeat is the dominant promoter for human B1,3-

galactosyltransferase 5 in thecolon,

Proceedings of the National Academy of Sciences

USA, 100 (October 28, 2003):12841

46; B. Burgess-Beusse, C. Farrell, M. Gaszner, M.

Litt, V. Mutskov, F. Recillas-Targa, M. Simpson, A. West, and G. Felsenfeld,

The

insulation of genes from external enhancers and silencing chromatin,

Proceedingsof

the National Academy of Sciences USA, 99 (December 10, 2002): 16433

37; P. Medstrand,

Josette-Ren

é

e Landry, and D. L. Mager,

Long Terminal Repeats Are Used as Alternative

Promoters for the Endothelin B Receptor and Apolipoprotein C-I Genes in Humans,

Journal of Biological Chemistry, 276 (January 19, 2001): 1896

1903; L. Mari

ñ

o-

Ram

í

reza, K.C.Lewisb, D. Landsmana, and I.K. Jordan,

Transposable elements donate

lineage-specific regulatory sequences to host genomes,

Cytogenetic and Genome

Research, 110 (2005):333

41.

19. S. Henikoff, K. Ahmad, and H. S. Malik

The Centromere Paradox: Stable

Inheritance with Rapidly Evolving DNA,

Science, 293 (August 10, 2001):1098

1102; C.

Bell, A. G. West, and G. Felsenfeld,

Insulators and Boundaries: Versatile Regulatory

Elements in the Eukaryotic Genome,

Science, 291

(January 19, 2001): 447

50; M.-L. Pardue & P. G. DeBaryshe,

Drosophila

telomeres: two transposable elements with important roles in chromosomes,

Genetica,

107 (1999): 189

96; S. Henikoff,

Heterochromatin function in complex genomes,

Biochimica et Biophysica Acta, 1470 (February, 2000):

O1

O8; L. M.Figueiredo, L. H. Freitas-Junior, E. Bottius, Jean-Christophe Olivo-

Marin, and A. Scherf,

A central role for Plasmodium falciparum subtelomeric regions

in spatial positioning and telomere length regulation,

The EMBO Journal, 21 (2002):

815

24; Mary G. Schueler, Anne W. Higgins, M. Katharine Rudd, Karen Gustashaw, and

Huntington F. Willard,

Genomic and Genetic Definition of a Functional Human

Centromere,

Science, 294 (October 5, 2001): 109

15.

20. Ling-Ling Chen, Joshua N. DeCerbo and Gordon G. Carmichael,

Alu element-

mediated gene silencing,

The EMBO Journal 27 (2008): 1694

1705; Jerzy Jurka,

Evolutionary impact of human Alu repetitive elements,

Current Opinion in Genetics &

Development, 14 (2004): 603

8; G. Lev-Maor et al.

The birth of an alternatively spliced exon: 3

splice-site selection in Alu

exons,

1288

91; E. Kondo-Iida, K. Kobayashi, M. Watanabe, J. Sasaki, T. Kumagai, H.

Koide, K. Saito, M. Osawa, Y. Nakamura, and T. Toda,

Novel mutations and genotype-

phenotype relationships in 107 families with Fukuyamatype

congenital muscular dystrophy (FCMD),

Human Molecular Genetics, 8 (1999): 2303

09; John S. Mattick and Igor V. Makunin,

Non-coding RNA,

Human Molecular Genetics,

15 (2006): R17-R29.