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在最常被选择的细胞研究模型中,硝酸还原酶、3-巯基丙酮酸硫转移酶、胱硫醚γ-裂解酶的表达和活性。

The Expression and Activity of Rhodanese, 3-Mercaptopyruvate Sulfurtransferase, Cystathionine γ-Lyase in the Most Frequently Chosen Cellular Research Models.

机构信息

Faculty of Medicine, Medical College, Chair of Medical Biochemistry, Jagiellonian University, Kopernika 7 St., 31-034 Krakow, Poland.

Faculty of Chemistry, Jagiellonian University, Gronostajowa 2 St., 30-387 Krakow, Poland.

出版信息

Biomolecules. 2021 Dec 10;11(12):1859. doi: 10.3390/biom11121859.

Abstract

This paper provides information concerning the activity and expression levels of three sulfurtransferases (STRs): rhodanese (TST, EC: 2.8.1.1), 3-mercaptopyruvate sulfurtransferase (MPST, EC: 2.8.1.2) and cystathionine γ-lyase (CTH, EC: 4.4.1.1) in various cell lines. Since very limited data are available in the scientific literature on this subject, the available data are included in this paper. These shortages often force the researchers to carry out their own screening tests that allow them to choose an appropriate model for their further studies. This work supplements the existing deficiencies in this area and presents the activity and expression of STRs in the eight most frequently chosen cell lines: the mouse mammary gland cell line (NMuNG, ATCC: CRL-1636), mouse mammary gland tumor (4T1, ATCC: CRL-2539), mouse fibroblast (MEF, ATCC: SCRC-1008), mouse melanoma (B16-F1, ATCC: CRL-6323), human colorectal adenocarcinoma (Caco-2, ATCC: HTB-37), human embryonic kidney (HEK-293, ATCC: CRL-1573), human osteosarcoma (MG-63, ATCC: CRL-1427) and rat myocardium (H9c2, ATCC: CRL-1446). Changes in STRs activity are directly related to the bioavailability of cysteine and the sulfane sulfur level, and thus the present authors also measured these parameters, as well as the level of glutathione (its reduced (GSH) and oxidized (GSSG) form) and the [GSH]/[GSSG] ratio that determines the antioxidant capacity of the cells. STRs demonstrate diverse functionality and clinical relevance; therefore, we also performed an analysis of genetic variation of STRs genes that revealed a large number of polymorphisms. Although STRs still provide challenges in several fields, responding to them could not only improve the understanding of various diseases, but may also provide a way to treat them.

摘要

本文提供了有关三种硫转移酶(STRs)的活性和表达水平的信息:硫代转氨酸(TST,EC:2.8.1.1)、3-巯基丙酮酸硫转移酶(MPST,EC:2.8.1.2)和胱硫醚 γ-裂合酶(CTH,EC:4.4.1.1)在各种细胞系中的信息。由于科学文献中关于这个主题的可用数据非常有限,因此本文包括了现有数据。这些不足往往迫使研究人员进行自己的筛选测试,使他们能够为进一步的研究选择合适的模型。这项工作补充了该领域现有的不足,并展示了 STRs 在最常选择的八种细胞系中的活性和表达:小鼠乳腺细胞系(NMuNG,ATCC:CRL-1636)、小鼠乳腺肿瘤(4T1,ATCC:CRL-2539)、小鼠成纤维细胞(MEF,ATCC:SCRC-1008)、小鼠黑色素瘤(B16-F1,ATCC:CRL-6323)、人结直肠腺癌细胞(Caco-2,ATCC:HTB-37)、人胚肾细胞(HEK-293,ATCC:CRL-1573)、人骨肉瘤(MG-63,ATCC:CRL-1427)和大鼠心肌细胞(H9c2,ATCC:CRL-1446)。STRs 活性的变化直接与半胱氨酸的生物利用度和硫胺素水平有关,因此本研究作者还测量了这些参数,以及谷胱甘肽水平(其还原型(GSH)和氧化型(GSSG)形式)和 [GSH]/[GSSG] 比值,该比值决定了细胞的抗氧化能力。STRs 具有多种功能和临床相关性;因此,我们还对 STRs 基因的遗传变异进行了分析,结果发现了大量多态性。尽管 STRs 在几个领域仍然存在挑战,但应对这些挑战不仅可以提高对各种疾病的认识,而且可能为治疗这些疾病提供一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa6e/8699783/1b04bed0a2ed/biomolecules-11-01859-g001.jpg

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