Organi di Senso Department, Sapienza University of Rome, Rome, Italy.
J Clin Pathol. 2011 Oct;64(10):911-5. doi: 10.1136/jclinpath-2011-200096. Epub 2011 Jul 8.
The signalling system of phosphoinositides (PIs) is involved in a number of cell and tissue functions including membrane trafficking, ion channel activity, cell cycle, apoptosis, differentiation and cell and tissue polarity. Recently, a role in cell migration was hypothesised for PI and related molecules including the phosphoinositide-specific phospholipases C (PI-PLCs), main players in PI signalling. The expression of PI-PLCs is tissue-specific and evidence suggests that it varies under different conditions such as tumour progression or cell activation. In order to obtain a complete picture, the expression of all PI-PLC isoforms was analysed in human endothelial cells (EC).
Using molecular biology methods (RT-PCR), the expression of PI-PLC isoforms was analysed in human umbilical vein endothelial cells (HUVEC), a widely used experimental model for human EC.
All the PI-PLC isoforms except PI-PLC β1, PI-PLC ε and PI-PLC ζ were expressed in HUVEC.
The growing interest in the complex cascade of events occurring in angiogenesis will provide useful insights for therapeutic strategies. The expression of PI-PLC isoforms in HUVEC is a useful tool for further studies directed to understanding their role in angiogenesis. However, although HUVEC represent a widely used experimental model for human macrovascular EC, limitations remain in that they cannot fully represent the metabolic properties and interactions of the EC distributed in the entire organism.
磷酸肌醇(PI)信号系统参与许多细胞和组织功能,包括膜运输、离子通道活性、细胞周期、细胞凋亡、分化以及细胞和组织极性。最近,有人假设 PI 和相关分子(包括磷酸肌醇特异性磷脂酶 C(PI-PLCs))在细胞迁移中起作用,PI-PLCs 是 PI 信号转导的主要参与者。PI-PLCs 的表达具有组织特异性,有证据表明,它在肿瘤进展或细胞激活等不同条件下会发生变化。为了获得完整的图景,分析了人内皮细胞(EC)中所有 PI-PLC 同工型的表达。
使用分子生物学方法(RT-PCR),分析了人脐静脉内皮细胞(HUVEC)中 PI-PLC 同工型的表达,HUVEC 是一种广泛用于人类 EC 的实验模型。
除了 PI-PLCβ1、PI-PLCε和 PI-PLCζ之外,所有 PI-PLC 同工型均在 HUVEC 中表达。
对血管生成中发生的复杂级联事件的日益关注将为治疗策略提供有用的见解。HUVEC 中 PI-PLC 同工型的表达是进一步研究其在血管生成中作用的有用工具。然而,尽管 HUVEC 是一种广泛用于人类大血管 EC 的实验模型,但仍然存在局限性,因为它们不能完全代表分布在整个生物体中的 EC 的代谢特性和相互作用。