敲除 Hsp70 基因可调节腿部肌肉与年龄相关的转录组变化,并降低黑腹果蝇的运动速度和寿命

IF 1.5 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Biology Pub Date : 2024-04-09 DOI:10.1134/s0026893324020109
I. V. Kukushkina, P. A. Makhnovskii, V. G. Zgoda, N. S. Kurochkina, D. V. Popov
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摘要

本研究调查了敲除六个 Hsp70 基因(哺乳动物基因 Hspa1a、Hspa1b、Hspa2 和 Hspa8 的直向同源物)对黑腹果蝇腿部基因表达的年龄相关变化的影响,黑腹果蝇腿部主要包含骨骼肌束。为此,我们研究了 w1118 对照品系和 Hsp70- 品系雄性果蝇在出生后第 7、23 和 47 天的腿部转录组概况。在 w1118 型苍蝇中,与年龄相关的运动(攀爬)速度(功能状态和耐力的标志)的下降伴随着腿部骨骼肌转录组特征的明显变化,而这种变化本质上是保守的。与对照组相比,Hsp70-苍蝇的中位寿命更短,运动速度明显降低;与此同时,还观察到骨骼肌转录组与年龄相关的复杂动态变化。基于质谱的定量蛋白质组学研究表明,与w1118蝇相比,47天龄的Hsp70 -蝇在葡萄糖代谢和脂肪氧化的关键酶(糖酵解、磷酸戊糖途径、克雷布斯循环、β-氧化和氧化磷酸化)的含量上表现出多向变化。这种失调可能与编码伴侣蛋白(小 Hsp、Hsp40、60 和 70)的其他基因表达的补偿性增加有关,这些基因可调节特定的靶蛋白集。总之,我们的数据表明,敲除六个 Hsp70 基因会轻微降低苍蝇的中位寿命,但会显著降低运动速度,这可能与腿部骨骼肌转录组的复杂变化以及能量代谢关键酶含量的多向变化有关。
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Knockout of Hsp70 Genes Modulates Age-Related Transcriptomic Changes in Leg Muscles and Reduces the Locomotion Speed and Lifespan of Drosophila melanogaster

This study investigated the effect of knockout of six Hsp70 genes (orthologues of the mammalian genes Hspa1a, Hspa1b, Hspa2, and Hspa8) on age-related changes in gene expression in the legs of Drosophila melanogaster, which contain predominantly skeletal muscle bundles. For this, the leg transcriptomic profile was examined in males of the w1118 control strain and the Hsp70 strain on the 7th, 23rd and 47th days of life. In w1118 flies, an age-related decrease in the locomotion (climbing) speed (a marker of functional state and endurance) was accompanied by a pronounced change in the transcriptomic profile of the leg skeletal muscles, which is conservative in nature. In Hsp70 flies, the median lifespan was shorter and the locomotion speed was significantly lower compared to the control; at the same time, complex changes in the age-related dynamics of the skeletal muscle transcriptome were observed. Mass spectrometry-based quantitative proteomics showed that 47-day-old Hsp70 flies, compared with w1118 flies, demonstrated multidirectional changes in the contents of key enzymes of glucose metabolism and fat oxidation (glycolysis, pentose phosphate pathway, Krebs cycle, beta-oxidation, and oxidative phosphorylation). Such dysregulation may be associated with a compensatory increase in the expression of other genes encoding chaperones (small Hsp, Hsp40, 60, and 70), which regulate specific sets of target proteins. Taken together, our data show that knockout of six Hsp70 genes slightly reduced the median lifespan of flies, but significantly reduced the locomotion speed, which may be associated with complex changes in the transcriptome of the leg skeletal muscles and with multidirectional changes in the contents of key enzymes of energy metabolism.

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来源期刊
Molecular Biology
Molecular Biology 生物-生化与分子生物学
CiteScore
1.30
自引率
8.30%
发文量
78
审稿时长
3 months
期刊介绍: Molecular Biology is an international peer reviewed journal that covers a wide scope of problems in molecular, cell and computational biology including genomics, proteomics, bioinformatics, molecular virology and immunology, molecular development biology, molecular evolution and related areals. Molecular Biology publishes reviews, experimental and theoretical works. Every year, the journal publishes special issues devoted to most rapidly developing branches of physical-chemical biology and to the most outstanding scientists.
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