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原代培养中近端小管基因表达的持续改变与肝细胞核因子4α(HNF4A)缺失相关。

Sustained alterations in proximal tubule gene expression in primary culture associate with HNF4A loss.

作者信息

Telang Asha C, Ference-Salo Jenna T, McElliott Madison C, Chowdhury Mahboob, Beamish Jeffrey A

机构信息

Division of Nephrology, Department of Internal Medicine, University of Michigan, 1500 E. Medical Center Drive, SPC 5364, Ann Arbor, MI, 48109, USA.

出版信息

Sci Rep. 2024 Oct 2;14(1):22927. doi: 10.1038/s41598-024-73861-3.

Abstract

Primary cultures of proximal tubule cells are widely used to model the behavior of kidney epithelial cells in vitro. However, de-differentiation of primary cells upon culture has been observed and appreciated for decades, yet the mechanisms driving this phenomenon remain poorly understood. This confounds the interpretation of experiments using primary kidney epithelial cells and prevents their use to engineer functional kidney tissue ex vivo. In this report, we measure the dynamics of cell-state transformations in early primary culture of mouse proximal tubules to identify key pathways and processes that correlate with and may drive de-differentiation. Our data show that the loss of proximal-tubule-specific genes is rapid, uniform, and sustained even after confluent, polarized epithelial monolayers develop. This de-differentiation occurs uniformly across many common culture condition variations. Changes in early culture were strongly associated with the loss of HNF4A. Exogenous re-expression of HNF4A can promote expression of a subset of proximal tubule genes in a de-differentiated proximal tubule cell line. Using genetically labeled proximal tubule cells, we show that selective pressures very early in culture influence which cells grow to confluence. Together, these data indicate that the loss of in vivo function in proximal tubule cultures occurs very early and suggest that the sustained loss of HNF4A is a key regulatory event mediating this change.

摘要

近端小管细胞的原代培养被广泛用于在体外模拟肾上皮细胞的行为。然而,原代细胞在培养过程中的去分化现象已被观察到并认识了数十年,但其驱动这一现象的机制仍知之甚少。这使得对使用原代肾上皮细胞的实验的解释变得混乱,并阻碍了它们用于体外构建功能性肾组织。在本报告中,我们测量了小鼠近端小管早期原代培养中细胞状态转变的动态,以确定与去分化相关并可能驱动去分化的关键途径和过程。我们的数据表明,即使在汇合的、极化的上皮单层形成后,近端小管特异性基因的丢失也是迅速、均匀且持续的。这种去分化在许多常见的培养条件变化中均一发生。早期培养的变化与HNF4A的丢失密切相关。在去分化的近端小管细胞系中外源重新表达HNF4A可以促进近端小管基因子集的表达。使用基因标记的近端小管细胞,我们表明培养早期的选择压力会影响哪些细胞生长至汇合。总之,这些数据表明近端小管培养中体内功能的丧失在很早的时候就发生了,并表明HNF4A的持续丢失是介导这种变化的关键调节事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/756b/11447228/8a8f109fe16d/41598_2024_73861_Fig1_HTML.jpg

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