Bisht Deepa, Patne Ketki, Rakesh Radhakrishnan, Muthuswami Rohini
Chromatin Remodeling Laboratory, School of Life Sciences, JNU, New Delhi, India.
Front Cell Dev Biol. 2022 Jun 16;10:870815. doi: 10.3389/fcell.2022.870815. eCollection 2022.
SMARCAL1 and BRG1, both classified as ATP-dependent chromatin remodeling proteins, play a role in double-strand break DNA damage response pathways. Mutations in SMARCAL1 cause Schimke Immuno-osseous Dysplasia (SIOD) while mutations in BRG1 are associated with Coffin-Siris Syndrome (CSS4). In HeLa cells, SMARCAL1 and BRG1 co-regulate the expression of , and RNAi genes on doxorubicin-induced DNA damage. Both the proteins are found to be simultaneously present on the promoter of these genes. Based on these results we hypothesized that SMARCAL1 and BRG1 interact with each other forming a complex. In this paper, we validate our hypothesis and show that SMARCAL1 and BRG1 do indeed interact with each other both in the absence and presence of doxorubicin. The formation of these complexes is dependent on the ATPase activity of both SMARCAL1 and BRG1. Using deletion constructs, we show that the HARP domains of SMARCAL1 mediate interaction with BRG1 while multiple domains of BRG1 are probably important for binding to SMARCAL1. We also show that SIOD-associated mutants fail to form a complex with BRG1. Similarly, CSS4-associated mutants of BRG1 fail to interact with SMARCAL1, thus, possibly contributing to the failure of the DNA damage response pathway and pathophysiology associated with SIOD and CSS4.
SMARCAL1和BRG1都被归类为ATP依赖的染色质重塑蛋白,在双链断裂DNA损伤反应途径中发挥作用。SMARCAL1的突变会导致希姆克免疫性骨发育不良(SIOD),而BRG1的突变与科芬-西里综合征(CSS4)有关。在HeLa细胞中,SMARCAL1和BRG1共同调节阿霉素诱导的DNA损伤时、和RNAi基因的表达。发现这两种蛋白质同时存在于这些基因的启动子上。基于这些结果,我们推测SMARCAL1和BRG1相互作用形成一个复合物。在本文中,我们验证了我们的假设,并表明SMARCAL1和BRG1在阿霉素存在和不存在的情况下确实相互作用。这些复合物的形成依赖于SMARCAL1和BRG1两者的ATP酶活性。使用缺失构建体,我们表明SMARCAL1的HARP结构域介导与BRG1的相互作用,而BRG1的多个结构域可能对与SMARCAL1的结合很重要。我们还表明,与SIOD相关的突变体无法与BRG1形成复合物。同样,BRG1的与CSS4相关的突变体无法与SMARCAL1相互作用,因此,可能导致DNA损伤反应途径的失败以及与SIOD和CSS4相关的病理生理学。