Yuning Hou, Chunlu Fang, Wenqi Yang, Shujing Liu, Liangming Li
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引用次数: 0
Abstract
Follistatin-like protein 1 (FSTL1) is a secreted glycoprotein involved in cardiovascular protection, tissue repair, inflammation, fibrosis, and tumor biology. Accumulating evidence indicates that FSTL1 exerts opposing effects across tissues and disease contexts, producing either protective or pathogenic outcomes. Although this functional duality is generally considered context dependent, its mechanistic basis remains incompletely understood. Recent studies suggest that FSTL1 does not signal through a single receptor but engages or modulates multiple functionally distinct receptor systems, including disco-interacting protein 2 homolog A (DIP2A), Toll-like receptor 4/cluster of differentiation 14 (TLR4/CD14), and bone morphogenetic protein (BMP) receptors. DIP2A predominantly mediates cell survival and tissue repair, whereas TLR4/CD14 primarily coordinates innate immune and inflammatory responses. FSTL1 also modulates BMP ligand-receptor signaling, thereby influencing development, differentiation, tissue remodeling, and context-dependent tumor responses. The net biological output of FSTL1 is therefore proposed to be shaped by cell-type-specific receptor expression, post-translational modifications, microenvironmental cues, and potential crosstalk or competition among coexisting receptor systems. From a translational perspective, non-receptor-selective targeting of FSTL1 carries inherent risks because it may simultaneously suppress protective and pathological signaling programs. Receptor-selective approaches, including the development of DIP2A-biased agonists to enhance tissue protection and the selective disruption of pathological TLR4 signaling to attenuate inflammation, may offer greater therapeutic precision. This review proposes a receptor-centered framework for understanding the functional complexity of FSTL1 and discusses receptor-selective intervention strategies for cardiovascular, fibrotic, inflammatory, and malignant diseases.
卵泡抑素样蛋白1 (Follistatin-like protein 1, FSTL1)是一种分泌糖蛋白,参与心血管保护、组织修复、炎症、纤维化和肿瘤生物学。越来越多的证据表明,FSTL1在组织和疾病环境中发挥相反的作用,产生保护性或致病性结果。虽然这种功能对偶性通常被认为是上下文相关的,但其机制基础仍未完全理解。最近的研究表明,FSTL1不通过单一受体发出信号,而是参与或调节多种功能不同的受体系统,包括disco-interacting protein 2 homolog a (DIP2A)、toll样受体4/分化簇14 (TLR4/CD14)和骨形态发生蛋白(BMP)受体。DIP2A主要介导细胞存活和组织修复,而TLR4/CD14主要协调先天免疫和炎症反应。FSTL1还调节BMP配体受体信号,从而影响发育、分化、组织重塑和环境依赖性肿瘤反应。因此,FSTL1的净生物学输出被认为是由细胞类型特异性受体表达、翻译后修饰、微环境线索以及共存受体系统之间潜在的串扰或竞争所决定的。从翻译的角度来看,非受体选择性靶向FSTL1具有固有的风险,因为它可能同时抑制保护性和病理性信号程序。受体选择性方法,包括开发dip2a偏向激动剂以增强组织保护和选择性破坏病理性TLR4信号以减轻炎症,可能提供更高的治疗精度。这篇综述提出了一个以受体为中心的框架来理解FSTL1的功能复杂性,并讨论了心血管、纤维化、炎症和恶性疾病的受体选择性干预策略。
期刊介绍:
Biochemical Pharmacology publishes original research findings, Commentaries and review articles related to the elucidation of cellular and tissue function(s) at the biochemical and molecular levels, the modification of cellular phenotype(s) by genetic, transcriptional/translational or drug/compound-induced modifications, as well as the pharmacodynamics and pharmacokinetics of xenobiotics and drugs, the latter including both small molecules and biologics.
The journal''s target audience includes scientists engaged in the identification and study of the mechanisms of action of xenobiotics, biologics and drugs and in the drug discovery and development process.
All areas of cellular biology and cellular, tissue/organ and whole animal pharmacology fall within the scope of the journal. Drug classes covered include anti-infectives, anti-inflammatory agents, chemotherapeutics, cardiovascular, endocrinological, immunological, metabolic, neurological and psychiatric drugs, as well as research on drug metabolism and kinetics. While medicinal chemistry is a topic of complimentary interest, manuscripts in this area must contain sufficient biological data to characterize pharmacologically the compounds reported. Submissions describing work focused predominately on chemical synthesis and molecular modeling will not be considered for review.
While particular emphasis is placed on reporting the results of molecular and biochemical studies, research involving the use of tissue and animal models of human pathophysiology and toxicology is of interest to the extent that it helps define drug mechanisms of action, safety and efficacy.