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表面活性蛋白C的仿生学

Biomimicry of surfactant protein C.

作者信息

Brown Nathan J, Johansson Jan, Barron Annelise E

机构信息

Department of Chemical and Biological Engineering, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, USA.

出版信息

Acc Chem Res. 2008 Oct;41(10):1409-17. doi: 10.1021/ar800058t. Epub 2008 Oct 4.

Abstract

Since the widespread use of exogenous lung surfactant to treat neonatal respiratory distress syndrome, premature infant survival and respiratory morbidity have dramatically improved. Despite the effectiveness of the animal-derived surfactant preparations, there still remain some concerns and difficulties associated with their use. This has prompted investigation into the creation of synthetic surfactant preparations. However, to date, no clinically used synthetic formulation is as effective as the natural material. This is largely because the previous synthetic formulations lacked analogues of the hydrophobic proteins of the lung surfactant system, SP-B and SP-C, which are critical functional constituents. As a result, recent investigation has turned toward the development of a new generation of synthetic, biomimetic surfactants that contain synthetic phospholipids along with a mimic of the hydrophobic protein portion of lung surfactant. In this Account, we detail our efforts in creating accurate mimics of SP-C for use in a synthetic surfactant replacement therapy. Despite SP-C's seemingly simple structure, the predominantly helical protein is extraordinarily challenging to work with given its extreme hydrophobicity and structural instability, which greatly complicates the creation of an effective SP-C analogue. Drawing inspiration from Nature, two promising biomimetic approaches have led to the creation of rationally designed biopolymers that recapitulate many of SP-C's molecular features. The first approach utilizes detailed SP-C structure-activity relationships and amino acid folding propensities to create a peptide-based analogue, SP-C33. In SP-C33, the problematic and metastable polyvaline helix is replaced with a structurally stable polyleucine helix and includes a well-placed positive charge to prevent aggregation. SP-C33 is structurally stable and eliminates the association propensity of the native protein. The second approach follows the same design considerations but makes use of a non-natural, poly-N-substituted glycine or "peptoid" scaffold to circumvent the difficulties associated with SP-C. By incorporating unique biomimetic side chains in a non-natural backbone, the peptoid mimic captures both SP-C's hydrophobic patterning and its helical secondary structure. Despite the differences in structure, both SP-C33 and the SP-C peptoid mimic capture many requisite features of SP-C. In a surfactant environment, these analogues also replicate many of the key surface activities necessary for a functional biomimetic surfactant therapy while overcoming the difficulties associated with the natural protein. With improved stability, greater production potential, and elimination of possible pathogenic contamination, these biomimetic surfactant formulations offer not only the potential to improve the treatment of respiratory distress syndrome but also the opportunity to treat other respiratory-related disorders.

摘要

自从外源性肺表面活性物质广泛用于治疗新生儿呼吸窘迫综合征以来,早产儿的存活率和呼吸疾病发病率有了显著改善。尽管动物源性表面活性物质制剂有效,但在使用过程中仍存在一些问题和困难。这促使人们对合成表面活性物质制剂的研发展开研究。然而,迄今为止,尚无临床上使用的合成制剂能达到天然物质的效果。这主要是因为先前的合成制剂缺乏肺表面活性物质系统中疏水蛋白(SP-B和SP-C)的类似物,而这些是关键的功能成分。因此,最近的研究转向了新一代合成仿生表面活性物质的开发,这种物质包含合成磷脂以及肺表面活性物质疏水蛋白部分的模拟物。在本综述中,我们详细介绍了我们为创建用于合成表面活性物质替代疗法的SP-C精确模拟物所做的努力。尽管SP-C的结构看似简单,但鉴于其极强的疏水性和结构不稳定性,这种主要呈螺旋状的蛋白质在处理时极具挑战性,这使得创建有效的SP-C类似物变得极为复杂。从自然界获取灵感,两种有前景的仿生方法已导致创建出合理设计的生物聚合物,这些聚合物概括了SP-C的许多分子特征。第一种方法利用详细的SP-C结构-活性关系和氨基酸折叠倾向来创建基于肽的类似物SP-C33。在SP-C33中,有问题的亚稳态聚缬氨酸螺旋被结构稳定的聚亮氨酸螺旋取代,并包含一个位置恰当的正电荷以防止聚集。SP-C33结构稳定,消除了天然蛋白质的缔合倾向。第二种方法遵循相同的设计思路,但使用非天然的聚N-取代甘氨酸或“类肽”支架来规避与SP-C相关的困难。通过在非天然主链中引入独特的仿生侧链,类肽模拟物既捕捉了SP-C的疏水模式,也捕捉了其螺旋二级结构。尽管结构不同,但SP-C33和SP-C类肽模拟物都具备SP-C的许多必要特征。在表面活性物质环境中,这些类似物还重现了功能性仿生表面活性物质疗法所需的许多关键表面活性,同时克服了与天然蛋白质相关的困难。这些仿生表面活性物质制剂具有更高的稳定性、更大的生产潜力,并消除了可能的病原体污染,不仅有可能改善呼吸窘迫综合征的治疗,还有机会治疗其他与呼吸相关的疾病。

相似文献

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Biomimicry of surfactant protein C.表面活性蛋白C的仿生学
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Helical peptoid mimics of lung surfactant protein C.肺表面活性物质蛋白C的螺旋类肽模拟物。
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Hydrophobic surfactant proteins and their analogues.疏水表面活性蛋白及其类似物。
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本文引用的文献

8
Hydrophobic surfactant proteins and their analogues.疏水表面活性蛋白及其类似物。
Neonatology. 2007;91(4):303-10. doi: 10.1159/000101346. Epub 2007 Jun 7.

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