Ignet
Search (e.g., vaccine, IFNG): Help
About
Home
Introduction
Statistics
Programs
Dignet
Gene
GenePair
BioSummarAI
Help & Docs
Documents
Help
FAQs
Links
Acknowledge
Disclaimer
Contact Us
UM Logo

UMMS Logo

UMMS Logo

Gene Information

Gene symbol: ID1

Gene name: inhibitor of DNA binding 1, dominant negative helix-loop-helix protein

HGNC ID: 5360

Synonyms: dJ857M17.1.2, bHLHb24

Related Genes

# Gene Symbol Number of hits
1 BMP2 1 hits

Related Sentences

# PMID Sentence
1 16622178 Upregulation of Id-1 via BMP-2 receptors induces reactive oxygen species in podocytes.
2 16622178 Here, we show the existence of mRNA for BMP-2 and for the BMP receptors BMPR1A, BMPR1B, BMPRII, ACVR1A, ACVR2, and ACVR2B in differentiated mouse podocytes and the protein expression of BMPR1A in human glomerular podocytes.
3 16622178 Recent data indicate that in a myoblastic cell line and in a breast cancer cell line, BMP-2 increases the expression of Id-1, a negative regulator of basic helix-loop-helix transcription factors, but the role of BMP-2 stimulated Id-1 expression in the kidney has not been further characterized.
4 16622178 Here, we show that BMP-2 increases the expression of Id-1 in differentiated podocytes.
5 16622178 The data indicate that BMP-2 may, via an increased expression of Id-1 and an increased generation of ROS, contribute to important cellular functions in podocytes.
6 16622178 Upregulation of Id-1 via BMP-2 receptors induces reactive oxygen species in podocytes.
7 16622178 Here, we show the existence of mRNA for BMP-2 and for the BMP receptors BMPR1A, BMPR1B, BMPRII, ACVR1A, ACVR2, and ACVR2B in differentiated mouse podocytes and the protein expression of BMPR1A in human glomerular podocytes.
8 16622178 Recent data indicate that in a myoblastic cell line and in a breast cancer cell line, BMP-2 increases the expression of Id-1, a negative regulator of basic helix-loop-helix transcription factors, but the role of BMP-2 stimulated Id-1 expression in the kidney has not been further characterized.
9 16622178 Here, we show that BMP-2 increases the expression of Id-1 in differentiated podocytes.
10 16622178 The data indicate that BMP-2 may, via an increased expression of Id-1 and an increased generation of ROS, contribute to important cellular functions in podocytes.
11 16622178 Upregulation of Id-1 via BMP-2 receptors induces reactive oxygen species in podocytes.
12 16622178 Here, we show the existence of mRNA for BMP-2 and for the BMP receptors BMPR1A, BMPR1B, BMPRII, ACVR1A, ACVR2, and ACVR2B in differentiated mouse podocytes and the protein expression of BMPR1A in human glomerular podocytes.
13 16622178 Recent data indicate that in a myoblastic cell line and in a breast cancer cell line, BMP-2 increases the expression of Id-1, a negative regulator of basic helix-loop-helix transcription factors, but the role of BMP-2 stimulated Id-1 expression in the kidney has not been further characterized.
14 16622178 Here, we show that BMP-2 increases the expression of Id-1 in differentiated podocytes.
15 16622178 The data indicate that BMP-2 may, via an increased expression of Id-1 and an increased generation of ROS, contribute to important cellular functions in podocytes.
16 16622178 Upregulation of Id-1 via BMP-2 receptors induces reactive oxygen species in podocytes.
17 16622178 Here, we show the existence of mRNA for BMP-2 and for the BMP receptors BMPR1A, BMPR1B, BMPRII, ACVR1A, ACVR2, and ACVR2B in differentiated mouse podocytes and the protein expression of BMPR1A in human glomerular podocytes.
18 16622178 Recent data indicate that in a myoblastic cell line and in a breast cancer cell line, BMP-2 increases the expression of Id-1, a negative regulator of basic helix-loop-helix transcription factors, but the role of BMP-2 stimulated Id-1 expression in the kidney has not been further characterized.
19 16622178 Here, we show that BMP-2 increases the expression of Id-1 in differentiated podocytes.
20 16622178 The data indicate that BMP-2 may, via an increased expression of Id-1 and an increased generation of ROS, contribute to important cellular functions in podocytes.