miR-125a-5p/miR-125b-5p contributes to pathological activation of angiotensin II-AT1R in mouse distal convoluted tubule cells by the suppression of Atrap

被引:4
|
作者
Hirota, Keigo [1 ]
Yamashita, Akio [2 ]
Abe, Eriko [1 ]
Yamaji, Takahiro [1 ]
Azushima, Kengo [1 ]
Tanaka, Shohei [1 ]
Taguchi, Shinya [1 ]
Tsukamoto, Shunichiro [1 ]
Wakui, Hiromichi [1 ]
Tamura, Kouichi [1 ]
机构
[1] Yokohama City Univ, Grad Sch Med, Dept Med Sci & Cardiorenal Med, Yokohama, Japan
[2] Univ Ryukyus, Grad Sch Med, Dept Invest Med, Nishihara, Okinawa, Japan
基金
日本学术振兴会;
关键词
RECEPTOR-ASSOCIATED PROTEIN; CANCER PROGRESSION; HYPERTROPHY; INVOLVEMENT; INHIBITION; EXPRESSION; MOLECULE; PROMOTES; BINDING; SYSTEM;
D O I
10.1016/j.jbc.2023.105478
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The renin-angiotensin system plays a crucial role in the regulation of blood pressure. Activation of the angiotensin II (Ang II)-Ang II type 1 receptor (AT1R) signaling pathway contributes to the pathogenesis of hypertension and subsequent organ damage. AT1R-associated protein (ATRAP) has been identified as an endogenous inhibitory protein of the AT1R pathological activation. We have shown that mouse Atrap (Atrap) represses various Ang II-AT1R-mediated pathologies, including hypertension in mice. The expression of human ATRAP (ATRAP)/Atrap can be altered in various pathological states in humans and mice, such as Ang II stimulation and serum starvation. However, the regulatory mechanisms of ATRAP/Atrap are not yet fully elucidated. miRNAs are 21 to 23 nucleotides of small RNAs that posttranscriptionally repress gene expression. Single miRNA can act on hundreds of target mRNAs, and numerous miRNAs have been identified as the Ang II-AT1R signaling-associated disease phenotype modulator, but nothing is known about the regulation of ATRAP/Atrap. In the present study, we identified miR-125a-5p/miR-125b-5p as the evolutionarily conserved miRNAs that potentially act on ATRAP/Atrap mRNA. Further analysis revealed that miR-125a-5p/miR-125b-5p can directly repress both ATRAP and Atrap. In addition, the inhibition of miR-125a-5p/miR-125b-5p resulted in the suppression of the Ang II-AT1R signaling in mouse distal convoluted tubule cells. Taken together, miR-125a-5p/miR-125b-5p activates Ang II- AT1R signaling by the suppression of ATRAP/Atrap. Our results provide new insights into the potential approaches for achieving the organ -protective effects by the repression of the miR-125 family associated with the enhancement of ATRAP/ Atrap expression.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] miR-125a-5p regulation increases phosphorylation of FAK that contributes to imatinib resistance in gastrointestinal stromal tumors
    Huang, Wen-Kuan
    Akcakaya, Pinar
    Gangaev, Anastasia
    Lee, Linkiat
    Zeljic, Katarina
    Hajeri, Praveensingh
    Berglund, Erik
    Ghaderi, Mehran
    Ahlen, Jan
    Branstrom, Robert
    Larsson, Catharina
    Lui, Weng-Onn
    EXPERIMENTAL CELL RESEARCH, 2018, 371 (01) : 287 - 296
  • [42] Ocular toxoplasmosis associated with up-regulation of miR-155-5p/miR-29c-3p and down-regulation of miR-21-5p/miR-125b-5p
    Meira-Strejevitch, Cristina Silva
    Pereira, Ingrid de Siqueira
    Carnietto Hippolito, Daise Damaris
    Maia, Marta Marques
    Cruz, Allecineia Bispo
    Gava, Ricardo
    Brandao de Mattos, Cinara Cassia
    Frederico, Fabio Batista
    Siqueira, Rubens Camargo
    Mattos, Luiz Carlos
    Pereira-Chioccola, Vera Lucia
    CYTOKINE, 2020, 127
  • [43] Downregulation of miR-125a-5p and miR-218-5p in Peripheral Blood Mononuclear Cells of Patients with Relapsing-Remitting Multiple Sclerosis
    Mosarrezaii Aghdam, Arash
    Rezaei, Somaye
    Zarza Nalivan, Fariba
    Babaie, Farhad
    Amiri Nikpour, Mohammad Reza
    Torkamandi, Shahram
    IMMUNOLOGICAL INVESTIGATIONS, 2022, 51 (05) : 1149 - 1161
  • [44] Expression of miR-31, miR-125b-5p, and miR-326 in the Adipogenic Differentiation Process of Adipose-Derived Stem Cells
    Tang, Yan-Feng
    Zhang, Yong
    Li, Xiao-Yu
    Li, Cai
    Tian, Weidong
    Liu, Lei
    OMICS-A JOURNAL OF INTEGRATIVE BIOLOGY, 2009, 13 (04) : 331 - 336
  • [45] Predictive Efficacy of MiR-125b-5p, MiR-17-5p, and MiR-185-5p in Liver Metastasis and Chemotherapy Response Among Advanced Stage Colorectal Cancer Patients
    Sur, Daniel
    Balacescu, Loredana
    Cainap, Simona S.
    Visan, Simona
    Pop, Laura
    Burz, Claudia
    Havasi, Andrei
    Buiga, Rares
    Cainap, Calin
    Irimie, Alexandru
    Balacescu, Ovidiu
    FRONTIERS IN ONCOLOGY, 2021, 11
  • [46] miR-125a-5p inhibits cancer stem cells phenotype and epithelial to mesenchymal transition in glioblastoma
    Zhu, Xi-De
    Gao, Zhen-Juan
    Zheng, Guo-Dong
    REVISTA DA ASSOCIACAO MEDICA BRASILEIRA, 2020, 66 (04): : 445 - 451
  • [47] miR-125a-5p a Novel Regulator of SLC26A6 in Intestinal Epithelial Cells
    Anbazhagan, Arivarasu Natarajan
    Priyamvada, Shubha
    Alrefai, Waddah A.
    Saksena, Seema
    Gill, Ravinder K.
    Dudeja, Pradeep K.
    FASEB JOURNAL, 2017, 31
  • [48] Differential expression of microRNAs miR-21, miR-31, miR-203, miR-125a-5p and miR-125b and proteins PTEN and p63 in verrucous carcinoma of the head and neck
    Odar, Katarina
    Bostjancic, Emanuela
    Gale, Nina
    Glavac, Damjan
    Zidar, Nina
    HISTOPATHOLOGY, 2012, 61 (02) : 257 - 265
  • [49] MIR-125B-5P CONFERS RESISTANCE TO SORAFENIB BY INDUCING ATXN1-MEDIATED EMT IN HEPATOCELLULARCARCINOMA
    Hirao, Akihiro
    Sato, Yasushi
    Tomonari, Tetsu
    Tanaka, Hironori
    Tanaka, Takahiro
    Taniguchi, Tatsuya
    Takehara, Masanori
    Kagemoto, Kaizo
    Teramae, Satoshi
    Takaoka, Yoshifumi
    Mitsui, Yasuhiro
    Fujino, Yasuteru
    Miyoshi, Jinsei
    Kitamura, Shinji
    Okamoto, Koichi
    Miyamoto, Hiroshi
    Muguruma, Naoki
    Takayama, Tetsuji
    GASTROENTEROLOGY, 2020, 158 (06) : S1143 - S1143
  • [50] Sirtuin7 oncogenic potential in human hepatocellular carcinoma and its regulation by the tumor suppressors MiR-125a-5p and MiR-125b
    Kim, Jeong Kyu
    Noh, Ji Heon
    Jung, Kwang Hwa
    Eun, Jung Woo
    Bae, Hyun Jin
    Kim, Min Gyu
    Chang, Young Gyoon
    Shen, Qingyu
    Park, Won Sang
    Lee, Jung Young
    Borlak, Juergen
    Nam, Suk Woo
    HEPATOLOGY, 2013, 57 (03) : 1055 - 1067