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LIN28B promotes cell invasion and colorectal cancer metastasis via CLDN1 and NOTCH3
Kensuke Sugiura, Yasunori Masuike, Kensuke Suzuki, Alice E. Shin, Nozomu Sakai, Hisahiro Matsubara, Masayuki Otsuka, Peter A. Sims, Christopher J. Lengner, Anil K. Rustgi
Kensuke Sugiura, Yasunori Masuike, Kensuke Suzuki, Alice E. Shin, Nozomu Sakai, Hisahiro Matsubara, Masayuki Otsuka, Peter A. Sims, Christopher J. Lengner, Anil K. Rustgi
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Research Article Gastroenterology Oncology

LIN28B promotes cell invasion and colorectal cancer metastasis via CLDN1 and NOTCH3

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Abstract

The RNA-binding protein LIN28B is overexpressed in over 30% of patients with colorectal cancer (CRC) and is associated with poor prognosis. In the present study, we unraveled a potentially novel mechanism by which LIN28B regulates colonic epithelial cell-cell junctions and CRC metastasis. Using human CRC cells (DLD-1, Caco-2, and LoVo) with either knockdown or overexpression of LIN28B, we identified claudin 1 (CLDN1) tight junction protein as a direct downstream target and effector of LIN28B. RNA immunoprecipitation revealed that LIN28B directly binds to and posttranscriptionally regulates CLDN1 mRNA. Furthermore, using in vitro assays and a potentially novel murine model of metastatic CRC, we show that LIN28B-mediated CLDN1 expression enhances collective invasion, cell migration, and metastatic liver tumor formation. Bulk RNA sequencing of the metastatic liver tumors identified NOTCH3 as a downstream effector of the LIN28B/CLDN1 axis. Additionally, genetic and pharmacologic manipulation of NOTCH3 signaling revealed that NOTCH3 was necessary for invasion and metastatic liver tumor formation. In summary, our results suggest that LIN28B promotes invasion and liver metastasis of CRC by posttranscriptionally regulating CLDN1 and activating NOTCH3 signaling. This discovery offers a promising new therapeutic option for metastatic CRC to the liver, an area where therapeutic advancements have been relatively scarce.

Authors

Kensuke Sugiura, Yasunori Masuike, Kensuke Suzuki, Alice E. Shin, Nozomu Sakai, Hisahiro Matsubara, Masayuki Otsuka, Peter A. Sims, Christopher J. Lengner, Anil K. Rustgi

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Figure 6

Pharmacologic inhibition of Notch signaling reduces LIN28B-induced liver metastasis.

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Pharmacologic inhibition of Notch signaling reduces LIN28B-induced liver...
(A) qRT-PCR analysis of NOTCH3 mRNA in DLD-1 LIN28Bhi cells treated with DMSO, 10 μM DAPT, or 20 μM DAPT. (B) qRT-PCR analysis of HES1 mRNA in DLD-1 LIN28Bhi cells treated with DMSO, 10 μM DAPT, or 20 μM DAPT. (C) Representative images of the wound closure scratch assay performed using DLD-1 LIN28Bhi cells treated with DMSO, 10 μM DAPT, or 20 μM DAPT. Scale bar = 200 μm. Area of the wound was measured by using ImageJ. Data represented as means ± SEM (n = 3). (D) Representative images of the aggregation assay performed using DLD-1 LIN28Bhi cells treated with DMSO, 10 μM DAPT, or 20 μM DAPT. The number of cell aggregates was counted using Keyence BZ-X810. Data represented as means ± SEM (n = 3). (E) Schematic drawing of the workflow used to study the effects of DAPT injection in a portal vein injection model of CRC metastasis. (F) Representative images of RFP expressed by DLD-1 LIN28Bhi tumors in the liver. Images were taken using Keyence BZ-X810. Scale bar = 500 μm. Data in A–D were analyzed by 1-way ANOVA followed by Tukey’s multiple-comparison test. Data in F were analyzed by Fisher’s exact test. **P < 0.01, ***P < 0.001, ****P < 0.0001.

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