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人TIG3和HRASLS3蛋白N端区域的表达、纯化及生化特性分析

Expression, purification and biochemical characterization of the N-terminal regions of human TIG3 and HRASLS3 proteins.

作者信息

Han Byeong-Gu, Cho Jea-Won, Cho Young-Doo, Kim Soo-Youl, Yoon Hye-Jin, Song Hyun Kyu, Cheong Hae-Kap, Jeon Young-Ho, Lee Dong-Ki, Lee Sangho, Lee Byung Il

机构信息

Cancer Cell and Molecular Biology Branch, Division of Cancer Biology, Research Institute, National Cancer Center, Goyang, Gyeonggi 410-769, Republic of Korea.

出版信息

Protein Expr Purif. 2010 May;71(1):103-7. doi: 10.1016/j.pep.2010.01.018. Epub 2010 Jan 25.

Abstract

Tarzarotene-induced gene 3 (TIG3) and HRAS-like suppressor (HRASLS3) are members of the HREV107 family of class II tumor suppressors, which are down-regulated in various cancer cells. TIG3 and HRASLS3 also exhibit phospholipase activities. Both proteins share a common domain architecture with hydrophilic N-terminal and hydrophobic C-terminal regions. The hydrophobic C-terminal region is important for tumor suppression. However, the function of the hydrophilic N-terminal region remains elusive. To facilitate biochemical characterizations of TIG3 and HRASLS3, we expressed and purified the N-terminal regions of TIG3 and HRASLS3, designated TIG3 (1-134) and HRASLS3 (1-133), in a bacterial system. We found that the N-terminal regions of TIG3 and HRASLS3 have calcium-independent phospholipase A(2) activities. Limited proteolysis revealed that TIG3 (1-132) is a structural domain in the N-terminal region of TIG3. Our data suggest that the hydrophobic C-terminal regions might be crucial for cellular localization, while the hydrophilic N-terminal regions are sufficient for the enzymatic activity of both TIG3 and HRASLS3.

摘要

他扎罗汀诱导基因3(TIG3)和类HRAS抑制因子(HRASLS3)是II类肿瘤抑制因子HREV107家族的成员,在各种癌细胞中表达下调。TIG3和HRASLS3也表现出磷脂酶活性。这两种蛋白质都具有共同的结构域结构,包括亲水性的N端和疏水性的C端区域。疏水性的C端区域对肿瘤抑制很重要。然而,亲水性N端区域的功能仍然不清楚。为了便于对TIG3和HRASLS3进行生化特性分析,我们在细菌系统中表达并纯化了TIG3和HRASLS3的N端区域,分别命名为TIG3(1-134)和HRASLS3(1-133)。我们发现TIG3和HRASLS3的N端区域具有不依赖钙的磷脂酶A2活性。有限蛋白酶解显示,TIG3(1-132)是TIG3 N端区域的一个结构域。我们的数据表明,疏水性的C端区域可能对细胞定位至关重要,而亲水性的N端区域足以支持TIG3和HRASLS3的酶活性。

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