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首页> 外文期刊>Molecular and Cellular Biology >Biphasic ordered induction of heme synthesis in differentiating murine erythroleukemia cells: role of erythroid 5-aminolevulinate synthase.
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Biphasic ordered induction of heme synthesis in differentiating murine erythroleukemia cells: role of erythroid 5-aminolevulinate synthase.

机译:双相有序诱导血红素合成在分化鼠类红血球细胞中的作用:红血球5-氨基乙酰丙酸酯合酶的作用。

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During dimethyl sulfoxide (DMSO)-stimulated differentiation of murine erythroleukemia (MEL) cells, one of the early events is the induction of the heme biosynthetic pathway. While recent reports have clearly demonstrated that GATA-1 is involved in the induction of erythroid cell-specific forms of 5-aminolevulinate synthase (ALAS-2) and porphobilinogen (PBG) deaminase and that cellular iron status plays a regulatory role for ALAS-2, little is known about regulation of the remainder of the pathway. In the current study, we have made use of a stable MEL cell mutant (MEAN-1) in which ALAS-2 enzyme activity is not induced by DMSO, hexamethylene bisacetamide (HMBA), or butyric acid. In this cell line, addition of 2% DMSO to growing cultures results in the normal induction of PBG deaminase and coproporphyrinogen oxidase but not in the induction of the terminal two enzymes, protoporphyrinogen oxidase and ferrochelatase. These DMSO-treated cells did not produce mRNA for beta-globin and do not terminally differentiate. In addition, the cellular level of ALAS activity declines rapidly after addition of DMSO, indicating that ALAS-1 must turn over rapidly at this time. Addition of 75 microM hemin alone to the cultures did not induce cells to terminally differentiate or induce any of the pathway enzymes. However, the simultaneous addition of 2% DMSO and 75 microM hemin caused the cells to carry out a normal program of terminal erythroid differentiation, including the induction of ferrochelatase and beta-globin. These data suggest that induction of the entire heme biosynthetic pathway is biphasic in nature and that induction of the terminal enzymes may be mediated by the end product of the pathway, heme. We have introduced mouse ALAS-2 cDNA into the ALAS-2 mutant cell line (MEAN-1) under the control of the mouse metallothionein promoter (MEAN-RA). When Cd and Zn are added to cultures of MEAN-RA in the absence of DMSO, ALAS-2 is induced but erythroid differentiation does not occur and cells continue to grow normally. In the presence of metallothionein inducers and DMSO, the MEAN-RA cells induce in a fashion similar to that found with the wild-type 270 MEL cells. Induction of the activities of ALAS, PBG deaminase, coproporphyrinogen oxidase, and ferrochelatase occurs. In cultures of MEAN-RA where ALAS-2 had been induced with Cd plus Zn 24 h prior to DMSO addition, onset of heme synthesis occurs more rapidly than when DMSO and Cd plus Zn are added simultaneously. This study reveals that induction of ALAS-2 alone is not sufficient to induce terminal differentiation of the MEAN-RA cells, and it does not appear that ALAS-2 alone is the rate-limiting enzyme of the heme biosynthetic pathway during MEL cell differentiation.
机译:在二甲基亚砜(DMSO)刺激的小鼠红白血病(MEL)细胞分化过程中,早期事件之一是血红素生物合成途径的诱导。尽管最近的报道清楚地表明GATA-1参与了类红细胞特异性形式的5-氨基乙酰丙酸合酶(ALAS-2)和胆色素原(PBG)脱氨酶的诱导,并且细胞铁的状态对ALAS-2发挥了调节作用,对其余途径的调控知之甚少。在当前的研究中,我们利用了稳定的MEL细胞突变体(MEAN-1),其中DMSO,六亚甲基双乙酰胺(HMBA)或丁酸不会诱导ALAS-2酶的活性。在该细胞系中,向生长的培养物中添加2%DMS​​O可以正常诱导PBG脱氨酶和原卟啉原氧化酶,但不能诱导末端的两种酶原卟啉原氧化酶和铁螯合酶。这些用DMSO处理的细胞不会产生β-珠蛋白的mRNA,并且不会最终分化。此外,添加DMSO后,ALAS活性的细胞水平迅速下降,这表明ALAS-1必须在此时快速翻转。单独向培养物中添加75 microM血红素不能诱导细胞最终分化或诱导任何途径的酶。但是,同时添加2%DMS​​O和75 microM血红素会导致细胞执行正常的终端红系分化程序,包括诱导铁螯合酶和β-珠蛋白。这些数据表明,整个血红素生物合成途径的诱导本质上是双相的,并且末端酶的诱导可能由途径的终产物血红素介导。我们已经在小鼠金属硫蛋白启动子(MEAN-RA)的控制下将小鼠ALAS-2 cDNA引入了ALAS-2突变细胞系(MEAN-1)。当在不存在DMSO的情况下将Cd和Zn添加到MEAN-RA培养物中时,会诱导ALAS-2,但不会发生类红细胞分化,并且细胞会继续正常生长。在金属硫蛋白诱导剂和DMSO存在下,MEAN-RA细胞的诱导方式类似于野生型270 MEL细胞。发生了ALAS,PBG脱氨酶,原卟啉原氧化酶和铁螯合酶活性的诱导。在MEAN-RA培养物中,在添加DMSO之前24 h用Cd和Zn诱导了ALAS-2,与同时添加DMSO和Cd和Zn相比,血红素合成的发生更快。这项研究表明,单独诱导ALAS-2不足以诱导MEAN-RA细胞的终末分化,并且单独出现ALAS-2并不是MEL细胞分化过程中血红素生物合成途径的限速酶。

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