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肌联蛋白在小型猪左心室中的可扩展性行为。

Extensible behavior of titin in the miniswine left ventricle.

机构信息

Cardiology Unit, Fletcher Allen Health Care, 111 Colchester Ave, Burlington, VT 05401, USA.

出版信息

Circulation. 2010 Feb 16;121(6):768-74. doi: 10.1161/CIRCULATIONAHA.109.918151. Epub 2010 Feb 1.

Abstract

BACKGROUND

The sarcomeric protein titin is a molecular spring responsible for passive tension and restoring forces of cardiomyocytes. Extension of titin as a function of sarcomere length (SL) has been studied in rodents, which predominantly express the smaller, stiffer N2B titin isoform. Large mammals coexpress roughly equal proportions of N2B and N2BA titin, the larger, more compliant isoform. We hypothesized that extension of titin in relation to SL differs in large mammals and that this difference is functionally important.

METHODS AND RESULTS

We characterized the filling pressure-SL relation in diastolic-arrested miniswine left ventricles. SL was 2.15 to 2.25 mum at a filling pressure of approximately 0 mm Hg and reached a maximum of approximately 2.50 mum with overfilling. In the normal filling pressure range, SL ranged from approximately 2.32 to approximately 2.40 mum. We assessed titin extension as a function of SL using immunoelectron microscopy, which allowed delineation of the behavior of specific spring segments. The major isoform difference was that the N2B-Us segment extended approximately 4-fold more as a function of SL in N2B compared with N2BA titin. Using this segment, we estimated sarcomeric force development with a worm-like chain model and found that N2B develops markedly greater force than N2BA titin. The resulting force with coexpression of N2B and N2BA titin is intermediate.

CONCLUSIONS

In light of murine studies showing that operating SLs are shorter than in miniswine, our results indicate that coexpression of the 2 titin isoforms in large mammals allows longer SLs without the development of excessive diastolic tension.

摘要

背景

肌联蛋白是一种分子弹簧,负责心肌细胞的被动张力和恢复力。肌联蛋白作为肌节长度(SL)的函数的延伸在啮齿动物中进行了研究,啮齿动物主要表达较小、较硬的 N2B 肌联蛋白同工型。大型哺乳动物共同表达大致相等比例的 N2B 和 N2BA 肌联蛋白,即较大、更顺应的同工型。我们假设,与 SL 相关的肌联蛋白的延伸在大型哺乳动物中有所不同,这种差异在功能上很重要。

方法和结果

我们在左心室舒张期骤停的小型猪中描述了填充压力-SL 关系。填充压力约为 0 毫米汞柱时,SL 为 2.15 至 2.25 微米,过度填充时达到约 2.50 微米。在正常填充压力范围内,SL 范围约为 2.32 至 2.40 微米。我们使用免疫电子显微镜评估了肌联蛋白作为 SL 的函数延伸,这允许描绘特定弹簧段的行为。主要的同工型差异是,与 N2BA 肌联蛋白相比,N2B 中的 N2B-Us 段在 SL 上的延伸约为 4 倍。使用这个片段,我们使用蠕虫状链模型评估了肌节力的发展,并发现 N2B 产生的力明显大于 N2BA 肌联蛋白。N2B 和 N2BA 肌联蛋白共同表达的结果是中间的。

结论

鉴于小鼠研究表明,工作 SL 比小型猪短,我们的结果表明,大型哺乳动物中 2 种肌联蛋白同工型的共同表达允许更长的 SL,而不会产生过度的舒张张力。

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