Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - Nature genetics, 2001 - nature.com
Several computational methods based on microarray data are currently used to study
genome-wide transcriptional regulation. Few studies, however, address the combinatorial …

[PDF][PDF] Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - nature genetics, 2001 - researchgate.net
The regulation of gene expression in eukaryotes is highly complex and often occurs through
the coordinated action of multiple transcription factors. Examples of this combinatorial …

Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam… - Nature …, 2001 - … .esploro.exlibrisgroup.com
Several computational methods based on microarray data are currently used to study
genome-wide transcriptional regulation. Few studies, however, address the combinatorial …

[PDF][PDF] Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - nature genetics, 2001 - bioinformatics.cs.vt.edu
The regulation of gene expression in eukaryotes is highly complex and often occurs through
the coordinated action of multiple transcription factors. Examples of this combinatorial …

Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam… - Nature …, 2001 - weizmann.esploro.exlibrisgroup.com
Several computational methods based on microarray data are currently used to study
genome-wide transcriptional regulation. Few studies, however, address the combinatorial …

[PDF][PDF] Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - nature genetics, 2001 - longitude.weizmann.ac.il
The regulation of gene expression in eukaryotes is highly complex and often occurs through
the coordinated action of multiple transcription factors. Examples of this combinatorial …

[引用][C] Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - Nature Genetics, 2001 - cir.nii.ac.jp
Identifying regulatory networks by combinatorial analysis of promoter elements | CiNii
Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 検索フォームへ …

[PDF][PDF] Identifying regulatory networks by combinatorial analysis of promoter elements

Y Pilpel, P Sudarsanam, GM Church - 2001 - arep.med.harvard.edu
The regulation of gene expression in eukaryotes is highly complex and often occurs through
the coordinated action of multiple transcription factors. Examples of this combinatorial …

Identifying regulatory networks by combinatorial analysis of promoter elements.

Y Pilpel, P Sudarsanam, GM Church - Nature Genetics, 2001 - europepmc.org
Several computational methods based on microarray data are currently used to study
genome-wide transcriptional regulation. Few studies, however, address the combinatorial …

Identifying regulatory networks by combinatorial analysis of promoter elements.

Y Pilpel, P Sudarsanam, GM Church - Nature Genetics, 2001 - search.ebscohost.com
Several computational methods based on microarray data are currently used to study
genome-wide transcriptional regulation. Few studies, however, address the combinatorial …