
miR-548-3p/DAG1 axis promotes the development of laryngeal carcinoma 217
Vol. 63(3): 206 - 217, 2022
8.  Liang T, Guo L, Liu C. Genome-wide analy-
sis of mir-548 gene family reveals evolutio-
nary and functional implications. J Biomed 
Biotechnol 2012;2012:679563. 
9.  Luo Z, Li D, Luo X, Li L, Gu S, Yu  L, Yuan-
zheng Ma. Decreased expression of miR-
548c-3p in osteosarcoma contributes to cell 
proliferation via targeting ITGAV. Cancer 
Biother Radiopharm 2016;31(5):153-158.
10.  Rehbein G, Schmidt B, Fleischhacker M. 
Extracellular microRNAs in bronchoalveo-
lar lavage samples from patients with lung 
diseases as predictors for lung cancer. Clin 
Chim Acta 2015;450:78-82.
11.  Lorrai R, Gandolfi F, Boccaccini A, Ruta V, 
Possenti M, Tramontano A, Costantino P, 
Lepore R, Vittorioso P. Genome-wide RNA-
seq analysis indicates that the DAG1 trans-
cription factor promotes hypocotyl elon-
gation acting on ABA, ethylene and auxin 
signaling. Sci Rep 2018;8(1):15895.
12.  Ju Y, Wu X, Wang H, Li B, Long Q, Zhang 
D, Chen H, Xiao N, Li F, Zhang S, Yang S. 
Genomic landscape of head and neck squa-
mous cell carcinoma across different ana-
tomic sites in Chinese population. Front 
Genet 2021;12:680699.
13.  He G, Pang R, Han J, Jia J, Ding Z, Bi 
W, Yu J, Chen L, Zhang J, Sun Y. TIN-
CR inhibits the proliferation and invasion 
of laryngeal squamous cell carcinoma by 
regulating miR-210/BTG2. BMC Cancer 
2021;21(1):753.
14.  Chen Z, Zhang C, Chen J, Wang D, Tu J, 
Van Waes C, Saba NF, Chen ZG, Chen Z. 
The proteomic landscape of growth factor 
signaling networks associated with FAT1 
mutations in head and neck cancers. Can-
cer Res 2021;81(17):4402-4416.
15.  Bahig H, Lapointe A, Bedwani S, de Gui-
se J, Lambert L, Filion E, Roberge D, 
Létourneau-Guillon L, Blais D, Ng SP, 
Nguyen-Tan PF. Dual-energy computed to-
mography for prediction of loco-regional 
recurrence after radiotherapy in larynx and 
hypopharynx squamous cell carcinoma. Eur 
J Radiol 2019;110:1-6.
16.  Hughes RT, Beuerlein WJ, O’Neill SS, Po-
rosnicu M, Lycan TW, Waltonen JD, Friz-
zell BA, Greven KM. Human papillomavi-
rus-associated squamous cell carcinoma 
of the larynx or hypopharynx: Clinical 
outcomes and implications for laryngeal 
preservation. Oral Oncol 2019;98:20-27.
17.  Garajei A, Parvin M, Mohammadi H, Alla-
meh A, Hamidavi A, Sadeghi M, Emami 
A, Brand S. Evaluation of the expression of 
miR-486-3p, miR-548-3p, miR-561-5p and 
miR-509-5p in tumor biopsies of patients 
with oral squamous cell carcinoma. Patho-
gens 2022;11(2):211.
18.  Perez-Ordoñez B. Neuroendocrine carcino-
mas of the larynx and head and neck: cha-
llenges in classification and grading. Head 
Neck Pathol 2018;12(1):1-8.
19.  Reinhard JR, Lin S, McKee KK, Meinen 
S, Crosson SC, Sury M, Hobbs S, Maier 
G, Yurchenco PD, Rüegg MA. Linker pro-
teins restore basement membrane and co-
rrect LAMA2-related muscular dystrophy in 
mice. Sci Transl Med 2017;9(396).
20.  Leibovitz Z, Mandel H, Falik-Zaccai TC, 
Ben Harouch S, Savitzki D, Krajden-
Haratz K, Gindes L, Tamarkin M, Lev 
D, Dobyns WB, Lerman-Sagie T. Walker-
Warburg syndrome and tectocerebellar 
dysraphia: A novel association caused by 
a homozygous DAG1 mutation. Eur J Pae-
diatr Neurol 2018;22(3):525-531.
21.  Harris E, McEntagart M, Topf A, Lochmü-
ller H, Bushby K, Sewry C, Straub V. Cli-
nical and neuroimaging findings in two 
brothers with limb girdle muscular dystro-
phy due to LAMA2 mutations. Neuromuscul 
Disord 2017;27(2):170-174.
22.  Sarkozy A, Foley AR, Zambon AA, Bönne-
mann CG, Muntoni F. LAMA2-related dys-
trophies: clinical phenotypes, disease bio-
markers, and clinical trial readiness. Front 
Mol Neurosci 2020;13:123.
23.  Zhou S, Ouyang W, Zhang X, Liao L, Pi X, 
Yang R, Mei B, Xu H, Xiang S, Li J. UTRN 
inhibits melanoma growth by suppressing 
p38 and JNK/c-Jun signaling pathways. 
Cancer Cell Int 2021;21(1):88.
24.  Wood CL, Suchacki KJ, van ‘t Hof R, 
Cawthorn WP, Dillon S, Straub V, Wong 
SC, Ahmed SF, Farquharson C. A compa-
rison of the bone and growth phenotype of 
mdx, mdx:Cmah(-/-) and mdx:Utrn (+/-) 
murine models with the C57BL/10 wild-
type mouse. Dis Model Mech 2020;13(2).