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The effect of TERC haploinsufficiency on the inheritance of telomere length.TERC单倍剂量不足对端粒长度遗传的影响。
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本文引用的文献

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A modified technique for partial pneumonectomy in the mouse.一种用于小鼠部分肺切除术的改良技术。
J Invest Surg. 2011;24(2):81-6. doi: 10.3109/08941939.2010.543261.
2
Thyroid transcription factor-1 influences the early phase of compensatory lung growth in adult mice.甲状腺转录因子-1 影响成年小鼠代偿性肺生长的早期阶段。
Am J Respir Crit Care Med. 2010 Jun 15;181(12):1397-406. doi: 10.1164/rccm.200908-1265OC. Epub 2010 Mar 1.
3
Telomere diseases.端粒疾病
N Engl J Med. 2009 Dec 10;361(24):2353-65. doi: 10.1056/NEJMra0903373.
4
Telomere shortening reduces regenerative capacity after acute kidney injury.端粒缩短会降低急性肾损伤后的再生能力。
J Am Soc Nephrol. 2010 Feb;21(2):327-36. doi: 10.1681/ASN.2009010072. Epub 2009 Dec 3.
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Short telomeres are sufficient to cause the degenerative defects associated with aging.端粒较短足以导致与衰老相关的退行性缺陷。
Am J Hum Genet. 2009 Dec;85(6):823-32. doi: 10.1016/j.ajhg.2009.10.028.
6
Matrix modulation of compensatory lung regrowth and progenitor cell proliferation in mice.基质调节在小鼠中代偿性肺生长和祖细胞增殖中的作用。
Am J Physiol Lung Cell Mol Physiol. 2010 Feb;298(2):L158-68. doi: 10.1152/ajplung.90594.2008. Epub 2009 Nov 13.
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Targeted injury of type II alveolar epithelial cells induces pulmonary fibrosis.靶向损伤 II 型肺泡上皮细胞可诱导肺纤维化。
Am J Respir Crit Care Med. 2010 Feb 1;181(3):254-63. doi: 10.1164/rccm.200810-1615OC. Epub 2009 Oct 22.
8
Keratinocyte growth factor accelerates compensatory growth in the remaining lung after trilobectomy in rats.角质形成细胞生长因子可加速大鼠三叶肺切除术后剩余肺组织的代偿性生长。
J Thorac Cardiovasc Surg. 2009 Jun;137(6):1499-507. doi: 10.1016/j.jtcvs.2008.11.037. Epub 2009 Mar 29.
9
Syndromes of telomere shortening.端粒缩短综合征
Annu Rev Genomics Hum Genet. 2009;10:45-61. doi: 10.1146/annurev-genom-082908-150046.
10
Lung alveolar integrity is compromised by telomere shortening in telomerase-null mice.在端粒酶缺失的小鼠中,端粒缩短会损害肺泡完整性。
Am J Physiol Lung Cell Mol Physiol. 2009 Jan;296(1):L57-70. doi: 10.1152/ajplung.90411.2008. Epub 2008 Oct 24.

端粒酶缺失的携带缩短端粒的小鼠部分肺切除术启动细胞生长停滞,导致有限的代偿性生长反应。

Partial pneumonectomy of telomerase null mice carrying shortened telomeres initiates cell growth arrest resulting in a limited compensatory growth response.

机构信息

Department of Surgery and Developmental Biology, Regenerative Medicine Program, The Saban Research Institute, Childrens Hospital Los Angeles, University of Southern California Keck School of Medicine, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2011 Jun;300(6):L898-909. doi: 10.1152/ajplung.00409.2010. Epub 2011 Apr 1.

DOI:10.1152/ajplung.00409.2010
PMID:21460122
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3119124/
Abstract

Telomerase mutations and significantly shortened chromosomal telomeres have recently been implicated in human lung pathologies. Natural telomere shortening is an inevitable consequence of aging, which is also a risk factor for development of lung disease. However, the impact of shortened telomeres and telomerase dysfunction on the ability of lung cells to respond to significant challenge is still largely unknown. We have previously shown that lungs of late generation, telomerase null B6.Cg-Terc(tm1Rdp) mice feature alveolar simplification and chronic stress signaling at baseline, a phenocopy of aged lung. To determine the role telomerase plays when the lung is challenged, B6.Cg-Terc(tm1Rdp) mice carrying shortened telomeres and wild-type controls were subjected to partial pneumonectomy. We found that telomerase activity was strongly induced in alveolar epithelial type 2 cells (AEC2) of the remaining lung immediately following surgery. Eighty-six percent of wild-type animals survived the procedure and exhibited a burst of early compensatory growth marked by upregulation of proliferation, stress response, and DNA repair pathways in AEC2. In B6.Cg-Terc(tm1Rdp) mice carrying shortened telomeres, response to pneumonectomy was characterized by decreased survival, diminished compensatory lung growth, attenuated distal lung progenitor cell response, persistent DNA damage, and cell growth arrest. Overall, survival correlated strongly with telomere length. We conclude that functional telomerase and properly maintained telomeres play key roles in both long-term survival and the early phase of compensatory lung growth following partial pneumonectomy.

摘要

端粒酶突变和显著缩短的染色体端粒最近被牵连到人类肺部病理学中。自然端粒缩短是衰老的不可避免后果,也是肺部疾病发展的风险因素。然而,端粒缩短和端粒酶功能障碍对肺细胞应对重大挑战的能力的影响在很大程度上仍然未知。我们之前已经表明,端粒酶缺失的 B6.Cg-Terc(tm1Rdp) 小鼠的晚期世代肺部具有肺泡简化和基线处的慢性应激信号,这是老年肺部的表型。为了确定端粒酶在肺部受到挑战时所起的作用,携带缩短端粒的 B6.Cg-Terc(tm1Rdp) 小鼠和野生型对照被进行了部分肺切除术。我们发现,端粒酶活性在手术后立即强烈诱导剩余肺部的肺泡上皮 2 型细胞(AEC2)中。86%的野生型动物在手术后存活下来,并表现出早期代偿性生长的爆发,这一过程的标志是 AEC2 中增殖、应激反应和 DNA 修复途径的上调。在携带缩短端粒的 B6.Cg-Terc(tm1Rdp) 小鼠中,肺切除术的反应特征是存活率降低、代偿性肺生长减弱、远端肺祖细胞反应减弱、持续的 DNA 损伤和细胞生长停滞。总体而言,存活率与端粒长度密切相关。我们得出结论,功能正常的端粒酶和适当维持的端粒在部分肺切除术后的长期存活和早期代偿性肺生长中起着关键作用。