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位于γ-珠蛋白基因3'端的调控元件与核基质结合,并与特殊的富含A-T的结合蛋白1(SATB1)相互作用,SATB1是一种与SAR/MAR相关区域DNA结合的蛋白。

The regulatory element 3' to the A gamma-globin gene binds to the nuclear matrix and interacts with special A-T-rich binding protein 1 (SATB1), an SAR/MAR-associating region DNA binding protein.

作者信息

Cunningham J M, Purucker M E, Jane S M, Safer B, Vanin E F, Ney P A, Lowrey C H, Nienhuis A W

机构信息

Clinical Hematology Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD.

出版信息

Blood. 1994 Aug 15;84(4):1298-308.

PMID:8049444
Abstract

A cis-acting DNA regulatory element 3' to the A gamma-globin gene contains eight distinct regions of DNA-protein interaction distributed over 750 bp of DNA. The sequences of two foot-printed regions (sites I and IV) are A-T rich and generate a highly retarded complex on gel shift analysis with nuclear extract from human erythroleukemia (K562) cells. We have purified a 98-kD protein that reproduces this gel shift. Tryptic cleavage and peptide sequence analysis demonstrated that the 98-kD protein is identical to a recently cloned protein, special A-T-rich binding protein 1 (SATB1), that binds selectively to nuclear matrix/scaffold-associated regions of DNA (MARs/SARs). We have shown by functional analysis that the 3' A gamma regulatory element associates with the nuclear matrix. SATB1 mRNA was identified in K562 cells, and reverse transcriptase-polymerase chain reaction (RT-PCR) demonstrated its transcript in several other hematopoietic lines. Antisera to SATB1 caused ablation of the gel shift complex generated by both the crude nuclear extract and the purified 98-kD protein with the site I oligonucleotide. Furthermore, oligonucleotides that bind SATB1 inhibited formation of the site I gel shift complex when added as excess unlabeled competitor. An immunoblot analysis of the site I gel shift complex documented the presence of SATB1. Binding of SATB1 to two sites within the 3' A gamma regulatory element and its MAR/SAR activity suggests that this element may influence gene expression through interaction with the nuclear matrix.

摘要

位于Aγ-珠蛋白基因3'端的顺式作用DNA调控元件包含8个不同的DNA-蛋白质相互作用区域,分布在750 bp的DNA上。两个足迹区域(位点I和IV)的序列富含A-T,在用人红白血病(K562)细胞核提取物进行凝胶迁移分析时会产生高度滞后的复合物。我们纯化了一种能重现这种凝胶迁移的98-kD蛋白。胰蛋白酶切割和肽序列分析表明,该98-kD蛋白与最近克隆的一种蛋白——特殊富含A-T结合蛋白1(SATB1)相同,SATB1能选择性地结合DNA的核基质/支架相关区域(MARs/SARs)。我们通过功能分析表明,3'Aγ调控元件与核基质相关。在K562细胞中鉴定出了SATB1 mRNA,逆转录聚合酶链反应(RT-PCR)证明其转录本也存在于其他几种造血细胞系中。针对SATB1的抗血清导致粗制核提取物和纯化的98-kD蛋白与位点I寡核苷酸产生的凝胶迁移复合物消失。此外,当作为过量未标记竞争物添加时,与SATB1结合的寡核苷酸会抑制位点I凝胶迁移复合物的形成。对位点I凝胶迁移复合物的免疫印迹分析证明了SATB1的存在。SATB1与3'Aγ调控元件内的两个位点结合及其MAR/SAR活性表明,该元件可能通过与核基质相互作用来影响基因表达。

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