The helix-loop-helix transcriptional regulator Id4 is required for terminal differentiation of luminal epithelial cells in the prostate.

Oncoscience Pub Date : 2021-03-24 eCollection Date: 2021-01-01 DOI:10.18632/oncoscience.524
Dhanushka Hewa Bostanthirige, Shravan K Komaragiri, Jugal B Joshi, Majid Alzahrani, Isha Saini, Sanjay Jain, Nathan J Bowen, Matthew C Havrda, Jaideep Chaudhary
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Abstract

Inhibitor of differentiation 4 (Id4), a member of the helix-loop-helix family of transcriptional regulators has emerged as a tumor suppressor in prostate cancer. In this study we investigated the effect of loss of Id4 (Id4-/-) on mouse prostate development. Histological analysis was performed on prostates from 25 days, 3 months and 6 months old Id4-/- mice. Expression of Amacr, Ck8, Ck18, Fkbp51, Fkbp52, androgen receptor, Pten, sca-1 and Nkx3.1 was investigated by immunohistochemistry. Results were compared to the prostates from Nkx3.1-/- mice. Id4-/- mice had smaller prostates with fewer and smaller tubules. Subtle PIN like lesions were observed at 6mo. Decreased Nkx3.1 and Pten and increased stem cell marker sca-1, PIN marker Amacr and basal cell marker p63 was observed at all ages. Persistent Ck8 and Ck18 expression suggested that loss of Id4 results in epithelial commitment but not terminal differentiation in spite of active Ar. Loss of Id4 attenuates normal prostate development and promotes hyperplasia/ dysplasia with PIN like lesions. The results suggest that loss of Id4 maintains stem cell phenotype of "luminal committed basal cells", identifying a unique prostate developmental pathway regulated by Id4.

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前列腺管腔上皮细胞的终极分化需要螺旋环螺旋转录调节因子Id4。
分化抑制因子 4(Id4)是转录调控因子螺旋环螺旋家族的成员,已成为前列腺癌的肿瘤抑制因子。在这项研究中,我们研究了Id4(Id4-/-)缺失对小鼠前列腺发育的影响。我们对 25 天、3 个月和 6 个月大的 Id4-/- 小鼠的前列腺进行了组织学分析。免疫组化法检测了Amacr、Ck8、Ck18、Fkbp51、Fkbp52、雄激素受体、Pten、sca-1和Nkx3.1的表达。结果与 Nkx3.1-/- 小鼠的前列腺进行了比较。Id4-/-小鼠的前列腺较小,肾小管较少且较小。6个月时观察到类似PIN的细微病变。在所有年龄段都观察到 Nkx3.1 和 Pten 减少,干细胞标记物 sca-1、PIN 标记物 Amacr 和基底细胞标记物 p63 增加。Ck8 和 Ck18 的持续表达表明,尽管 Ar 活跃,但 Id4 的缺失会导致上皮承诺,而不是终极分化。Id4的缺失会削弱前列腺的正常发育,促进前列腺增生/发育不良,出现类似PIN的病变。结果表明,Id4缺失可维持 "管腔承诺基底细胞 "的干细胞表型,从而确定了由Id4调控的独特前列腺发育途径。
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