Department of Science, Section of Biomedical Sciences and Technologies, Roma Tre University, Rome, Italy.
Department of Medical and Surgical Sciences and Biotechnologies, University of Roma "La Sapienza", Latina, Italy.
IUBMB Life. 2022 Sep;74(9):866-879. doi: 10.1002/iub.2653. Epub 2022 Jun 1.
Serum albumin (SA) is the most abundant protein in plasma and represents the main carrier of endogenous and exogenous compounds. Several evidence supports the notion that SA binds single and double-stranded deoxynucleotides and ribonucleotides at two sites, with values of the dissociation equilibrium constant (i.e., K ) ranging from micromolar to nanomolar values. This can be relevant from a physiological and pathological point of view, as in human plasma circulates cell-free nucleic acids (cfNAs), released by different tissues via apoptosis, necrosis, and secretions, circulates as single and double-stranded NAs. Albeit SA shows low hydrolytic reactivity toward DNA and RNA, the high plasma concentration of this protein and the occurrence of several SA receptors may be pivotal for sequestering and hydrolyzing cfNAs. Therefore, pathological conditions like cancer, characterized by altered levels of human SA or by altered SA post-translational modifications, may influence cfNAs distribution and metabolism. Besides, the stability, solubility, biocompatibility, and low immunogenicity make SA a golden share for biotechnological applications related to the delivery of therapeutic NAs (TNAs). Indeed, pre-clinical studies report the therapeutic potential of SA:TNAs complexes in precision cancer therapy. Here, the molecular and biotechnological implications of SA:NAs interaction are discussed, highlighting new perspectives on SA plasmatic functions.
血清白蛋白(SA)是血浆中最丰富的蛋白质,代表内源性和外源性化合物的主要载体。有几项证据支持这样一种观点,即 SA 在两个位点结合单链和双链脱氧核苷酸和核糖核苷酸,解离平衡常数(即 K)的值范围从微摩尔到纳摩尔。从生理和病理的角度来看,这可能是相关的,因为在人类血浆中循环着无细胞核酸(cfNAs),这些核酸是不同组织通过细胞凋亡、坏死和分泌释放出来的,以单链和双链 NAs 的形式循环。尽管 SA 对 DNA 和 RNA 的水解反应活性较低,但这种蛋白质的高血浆浓度和存在几种 SA 受体可能对 cfNAs 的隔离和水解至关重要。因此,像癌症这样的病理状况,其特征是人类 SA 水平改变或 SA 翻译后修饰改变,可能会影响 cfNAs 的分布和代谢。此外,SA 的稳定性、溶解度、生物相容性和低免疫原性使其成为与治疗性 NAs(TNAs)传递相关的生物技术应用的黄金选择。事实上,临床前研究报告了 SA:TNAs 复合物在精准癌症治疗中的治疗潜力。在这里,讨论了 SA:NAs 相互作用的分子和生物技术意义,强调了 SA 血浆功能的新观点。