Fellow ASN, AAAS, SFRBM, ISSFAL, College Park, MD, USA.
Prog Lipid Res. 2022 Jan;85:101142. doi: 10.1016/j.plipres.2021.101142. Epub 2021 Nov 21.
This review examines lipids and lipid-binding sites on proteins in relation to cardiovascular disease. Lipid nutrition involves food energy from ingested fatty acids plus fatty acids formed from excess ingested carbohydrate and protein. Non-esterified fatty acids (NEFA) and lipoproteins have many detailed attributes not evident in their names. Recognizing attributes of lipid-protein interactions decreases unexpected outcomes. Details of double bond position and configuration interacting with protein binding sites have unexpected consequences in acyltransferase and cell replication events. Highly unsaturated fatty acids (HUFA) have n-3 and n-6 motifs with documented differences in intensity of destabilizing positive feedback loops amplifying pathophysiology. However, actions of NEFA have been neglected relative to cholesterol, which is co-produced from excess food. Native low-density lipoproteins (LDL) bind to a high-affinity cell surface receptor which poorly recognizes biologically modified LDLs. NEFA increase negative charge of LDL and decrease its processing by "normal" receptors while increasing processing by "scavenger" receptors. A positive feedback loop in the recruitment of monocytes and macrophages amplifies chronic inflammatory pathophysiology. Computer tools combine multiple components in lipid nutrition and predict balance of energy and n-3:n-6 HUFA. The tools help design and execute precise clinical nutrition monitoring that either supports or disproves expectations.
这篇综述探讨了与心血管疾病相关的蛋白质中的脂质和脂质结合位点。脂质营养涉及摄入的脂肪酸以及过量摄入的碳水化合物和蛋白质转化而成的脂肪酸所提供的食物能量。非酯化脂肪酸(NEFA)和脂蛋白有许多详细的属性,这些属性在其名称中并不明显。认识到脂质-蛋白质相互作用的属性可以减少意外的结果。与蛋白质结合位点相互作用的双键位置和构型的细节在酰基转移酶和细胞复制事件中具有意想不到的后果。高度不饱和脂肪酸(HUFA)具有 n-3 和 n-6 基序,其在放大病理生理学的稳定正反馈环强度方面存在有记录的差异。然而,与胆固醇相比,NEFA 的作用被忽视了,胆固醇是由过量的食物共同产生的。天然的低密度脂蛋白(LDL)与高亲和力的细胞表面受体结合,而这种受体对生物修饰的 LDL 识别不佳。NEFA 增加了 LDL 的负电荷,并降低了其被“正常”受体处理的能力,同时增加了被“清道夫”受体处理的能力。单核细胞和巨噬细胞的募集形成正反馈环,放大了慢性炎症的病理生理学。计算机工具将脂质营养中的多个成分结合起来,并预测能量和 n-3:n-6 HUFA 的平衡。这些工具有助于设计和执行精确的临床营养监测,以支持或反驳预期。