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细胞数-细胞间隙液体积(CIF)比值的发现揭示了分泌自噬途径为伤口愈合提供 eHsp90α。

Discovery of Cell Number-Interstitial Fluid Volume (CIF) Ratio Reveals Secretory Autophagy Pathway to Supply eHsp90α for Wound Healing.

机构信息

Department of Dermatology and the USC-Norris Comprehensive Cancer Centre, Los Angeles, CA 90089, USA.

Department of Molecular Microbiology & Immunology, University of Southern California Keck Medical Centre, Los Angeles, CA 90033, USA.

出版信息

Cells. 2024 Jul 30;13(15):1280. doi: 10.3390/cells13151280.

Abstract

Cell secretion repairs tissue damage and restores homeostasis throughout adult life. The extracellular heat shock protein-90alpha (eHsp90α) has been reported as an exosome cargo and a potential driver of wound healing. However, neither the mechanism of secretion nor the genetic evidence for eHsp90α in wound healing has been substantiated. Herein, we show that tissue injury causes massive deposition of eHsp90α in tissues and secretion of eHsp90α by cells. Sequential centrifugations of conditioned medium from relevant cell lines revealed the relative distributions of eHsp90α in microvesicle, exosome and trypsin-sensitive supernatant fractions to be approximately <2%, <4% and >95%, respectively. Establishing the cell-number-to-interstitial-fluid-volume (CIF) ratio for the microenvironment of human tissues as 1 × 10 cells: 1 mL interstitial fluid enabled us to predict the corresponding tissue concentrations of eHsp90α in these fractions as 3.74 μg/mL, 5.61 μg/mL and 178 μg/mL. Remarkably, the 178 μg/mL eHsp90α matches the previously reported 100-300 μg/mL of recombinant eHsp90α whose topical application promotes maximum wound healing in animal models. More importantly, we demonstrate that two parallel secretory autophagy-regulating gene families, the autophagy-regulating (AR) genes and the Golgi reassembly-stacking protein (GRASP) genes work together to mediate the secretion of the physiological concentration of eHsp90α to promote wound healing. Thus, utilization of the CIF ratio-based extrapolation method may enable investigators to rapidly predict biomarker targets from cell-conditioned-medium data.

摘要

细胞分泌可修复组织损伤并维持成年后的内稳态。细胞外热休克蛋白 90α(eHsp90α)已被报道为外泌体的货物,并且是伤口愈合的潜在驱动因素。然而,eHsp90α 分泌的机制及其在伤口愈合中的遗传证据尚未得到证实。在此,我们发现组织损伤会导致组织中大量的 eHsp90α 沉积和细胞分泌 eHsp90α。对相关细胞系的条件培养基进行连续离心,发现 eHsp90α 在微泡、外泌体和胰蛋白酶敏感的上清液中的相对分布分别约为<2%、<4%和>95%。将人类组织微环境的细胞数到间质液体积(CIF)比确定为 1×10 个细胞:1 mL 间质液,使我们能够预测这些部分中 eHsp90α 的相应组织浓度为 3.74μg/mL、5.61μg/mL 和 178μg/mL。值得注意的是,178μg/mL 的 eHsp90α 与先前报道的 100-300μg/mL 的重组 eHsp90α 相匹配,其局部应用可促进动物模型中的最大伤口愈合。更重要的是,我们证明了两个平行的分泌自噬调节基因家族,即自噬调节(AR)基因和高尔基再组装堆叠蛋白(GRASP)基因共同作用,以介导生理浓度的 eHsp90α 的分泌,从而促进伤口愈合。因此,利用 CIF 比为基础的外推法,研究人员可以快速从细胞条件培养基数据中预测生物标志物靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22e0/11312289/79a97e1c6aaa/cells-13-01280-g001.jpg

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