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Table 3 Genes that activate unique pathways specific to radiation types in normal HEBC3KT

From: Distinct transcriptome profiles identified in normal human bronchial epithelial cells after exposure to γ-rays and different elemental particles of high Z and energy

Gene

Adjusted p-value

Radiation

Fold change

Specific radiation quality

IPA unique pathway

Gene interaction

1 hr

4 hr

12 hr

24 hr

THBS1

0.0005

γ-ray

−1.1

1.0

1.1

1.4

γ-ray

Inhibition of angiogenesis by TSP1

Phosphorylation of CD36 and FYN, subsequently activates p38, p53 and caspase 3 to promote apoptosis.

>0.01

Si

1.1

1.2

1.2

−1.1

>0.01

Fe

1.1

1.2

−1.1

−1.0

SH3GL3

0.0001

γ-ray

−1.3

1.1

−1.1

1.2

γ-ray

Mechanism of viral exit from host cells

Phosphorylation of ALIX, whose activation blocks apoptosis

>0.01

Si

1.2

−1.0

1.3

1.2

>0.01

Fe

1.0

−1.2

−1.1

1.0

APH1B

>0.01

γ-ray

1.2

1.1

1.3

−1.0

Fe

Notch signaling

Cleaves Notch C-terminal fragment, release the active form NCID and translocate to nucleus

>0.01

Si

1.0

1.2

−1.1

1.2

0.00002

Fe

1.0

−1.3

1.1

1.1

BLNK

>0.01

γ-ray

−1.2

1.1

−1.2

1.2

Si

Phospholipase C signaling

BLNK, PLD1 and PLD3 are upstream molecules that activate PLC-β and PLC-γ. PLC-γ subsequently activates PKC and the latter activates ERK1/2 and NF-κB pathways.

0.00002

Si

−1.3

1.2

1.1

1.5

>0.01

Fe

−1.0

1.1

1.1

1.1

PLD1

>0.01

γ-ray

−1.0

−1.2

−1.2

1.2

Si

0.0002

Si

−1.2

1.1

1.4

−1.0

>0.01

Fe

1.0

1.2

1.1

−1.1

PLD3

>0.01

γ-ray

−1.2

−1.1

1.2

1.0

Si

0.0002

Si

−1.1

1.2

1.3

1.6

 

>0.01

Fe

−1.2

−1.2

1.1

−1.3