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本文引用的文献

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Epidermal growth factor regulates the development of stem and progenitor Leydig cells in rats.表皮生长因子调节大鼠睾丸干细胞和祖细胞莱迪希细胞的发育。
J Cell Mol Med. 2020 Jul;24(13):7313-7330. doi: 10.1111/jcmm.15302. Epub 2020 May 22.
2
High ambient temperature disrupted the circadian rhythm of reproductive hormones and changed the testicular expression of steroidogenesis genes and clock genes in male mice.高环境温度打乱了生殖激素的昼夜节律,改变了雄性小鼠睾丸中类固醇生成基因和时钟基因的表达。
Mol Cell Endocrinol. 2020 Jan 15;500:110639. doi: 10.1016/j.mce.2019.110639. Epub 2019 Nov 6.
3
Stem Leydig Cells in the Adult Testis: Characterization, Regulation and Potential Applications.成年睾丸中的精原干细胞:特征、调控及潜在应用。
Endocr Rev. 2020 Feb 1;41(1):22-32. doi: 10.1210/endrev/bnz013.
4
Kinetics of cytokine receptor internalization under steady-state conditions affects growth of neighboring blood cells.稳态条件下细胞因子受体内化的动力学影响邻近血细胞的生长。
Haematologica. 2020 Jul;105(7):e325-e327. doi: 10.3324/haematol.2019.232959. Epub 2019 Oct 31.
5
MIRAGE syndrome with recurrent pneumonia probably associated with gastroesophageal reflux and achalasia: A case report.伴有复发性肺炎的MIRAGE综合征可能与胃食管反流和贲门失弛缓症相关:一例报告
Clin Pediatr Endocrinol. 2019;28(4):147-153. doi: 10.1297/cpe.28.147. Epub 2019 Oct 19.
6
Reversion SAMD9 Mutations Modifying Phenotypic Expression of MIRAGE Syndrome and Allowing Inheritance in a Usually Disorder.逆转SAMD9突变可改变MIRAGE综合征的表型表达并允许在通常的疾病中遗传。
Front Endocrinol (Lausanne). 2019 Sep 11;10:625. doi: 10.3389/fendo.2019.00625. eCollection 2019.
7
A Rare Etiology of 46,XY Disorder of Sex Development and Adrenal Insufficiency: A Case of MIRAGE Syndrome Caused by Mutations in the Gene.一种罕见的 46,XY 性发育障碍和肾上腺皮质功能减退症病因:由 基因突变引起的 MIRAGE 综合征 1 例。
J Clin Res Pediatr Endocrinol. 2020 Jun 3;12(2):206-211. doi: 10.4274/jcrpe.galenos.2019.2019.0053. Epub 2019 Jun 18.
8
The roles and mechanisms of Leydig cells and myoid cells in regulating spermatogenesis.Leydig 细胞和肌样细胞在调节精子发生中的作用和机制。
Cell Mol Life Sci. 2019 Jul;76(14):2681-2695. doi: 10.1007/s00018-019-03101-9. Epub 2019 Apr 12.
9
A novel germline mutation in a family with ataxia-pancytopenia syndrome and pediatric acute lymphoblastic leukemia.一个患有共济失调-全血细胞减少综合征和小儿急性淋巴细胞白血病的家族中的一种新的种系突变。
Haematologica. 2019 Jul;104(7):e318-e321. doi: 10.3324/haematol.2018.207316. Epub 2019 Mar 28.
10
A novel SAMD9 variant identified in patient with MIRAGE syndrome: Further defining syndromic phenotype and review of previous cases.在 MIRAGE 综合征患者中鉴定出的一种新型 SAMD9 变异体:进一步定义综合征表型并回顾先前病例。
Pediatr Blood Cancer. 2019 Jul;66(7):e27726. doi: 10.1002/pbc.27726. Epub 2019 Mar 21.

模拟 Samd9/9L 综合征的小鼠多器官衰竭伴异常受体代谢。

Multiorgan failure with abnormal receptor metabolism in mice mimicking Samd9/9L syndromes.

机构信息

Department of Molecular Oncology and Leukemia Program Project, Research Institute for Radiation Biology and Medicine, Hiroshima University, Hiroshima, Japan.

Tsuruoka Metabolomics Laboratory, National Cancer Center, Tsuruoka, Yamagata, Japan.

出版信息

J Clin Invest. 2021 Feb 15;131(4). doi: 10.1172/JCI140147.

DOI:10.1172/JCI140147
PMID:33373325
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7880413/
Abstract

Autosomal dominant sterile α motif domain containing 9 (Samd9) and Samd9L (Samd9/9L) syndromes are a large subgroup of currently established inherited bone marrow failure syndromes that includes myelodysplasia, infection, growth restriction, adrenal hypoplasia, genital phenotypes, and enteropathy (MIRAGE), ataxia pancytopenia, and familial monosomy 7 syndromes. Samd9/9L genes are located in tandem on chromosome 7 and have been known to be the genes responsible for myeloid malignancies associated with monosomy 7. Additionally, as IFN-inducible genes, Samd9/9L are crucial for protection against viruses. Samd9/9L syndromes are caused by gain-of-function mutations and develop into infantile myelodysplastic syndromes associated with monosomy 7 (MDS/-7) at extraordinarily high frequencies. We generated mice expressing Samd9LD764N, which mimic MIRAGE syndrome, presenting with growth retardation, a short life, bone marrow failure, and multiorgan degeneration. In hematopoietic cells, Samd9LD764N downregulates the endocytosis of transferrin and c-Kit, resulting in a rare cause of anemia and a low bone marrow reconstitutive potential that ultimately causes MDS/-7. In contrast, in nonhematopoietic cells we tested, Samd9LD764N upregulated the endocytosis of EGFR by Ship2 phosphatase translocation to the cytomembrane and activated lysosomes, resulting in the reduced expression of surface receptors and signaling. Thus, Samd9/9L is a downstream regulator of IFN that controls receptor metabolism, with constitutive activation leading to multiorgan dysfunction.

摘要

常染色体显性遗传的α 结构域含有 9(Samd9)和 Samd9L(Samd9/9L)综合征是目前已确定的遗传性骨髓衰竭综合征的一个大亚组,包括骨髓增生异常、感染、生长受限、肾上腺发育不全、生殖器表型和肠病(MIRAGE)、共济失调全血细胞减少症和家族性单体 7 综合征。Samd9/9L 基因位于 7 号染色体上串联,已知是与单体 7 相关的髓系恶性肿瘤的相关基因。此外,作为 IFN 诱导基因,Samd9/9L 对于抵抗病毒至关重要。Samd9/9L 综合征是由功能获得性突变引起的,以极高的频率发展为与单体 7 相关的婴儿骨髓增生异常综合征(MDS/-7)。我们生成了表达 Samd9LD764N 的小鼠,模拟 MIRAGE 综合征,表现为生长迟缓、寿命短、骨髓衰竭和多器官退化。在造血细胞中,Samd9LD764N 下调转铁蛋白和 c-Kit 的内吞作用,导致贫血和骨髓重建能力低的罕见原因,最终导致 MDS/-7。相比之下,在我们测试的非造血细胞中,Samd9LD764N 通过 Ship2 磷酸酶向细胞质膜易位而上调 EGFR 的内吞作用,并激活溶酶体,导致表面受体和信号的表达减少。因此,Samd9/9L 是 IFN 的下游调节剂,控制受体代谢,其组成性激活导致多器官功能障碍。