Nganya Chidinma, Bryant Sahia, Alnakhalah Ayah, Allen-Boswell Taylor, Cunningham Sierra, Kanu Samuel, Williams Ashton, Philio Deshai, Dang Kathy, Butler Emmanuel, Player Audrey
Department of Biology, Texas Southern University, Houston, TX 77004, USA.
Int J Mol Sci. 2024 Dec 31;26(1):279. doi: 10.3390/ijms26010279.
Previous data show that the knockdown of the gene in the MDA-MB-231 cell line leads to the downregulation of gene expression. In addition, and genes are co-expressed and dysregulated in some of the same triple negative breast cancer patient samples. We propose that the co-expression of the two genes is attributed to the MYBL1 transcription factor regulation of the gene. We identify the MYBL1 transcription factor binding site upstream of the VCPIP1 start site and show that the MYBL1 protein can bind to the sequence identified in the VCPIP1 promoter region. Combined with the results from the knockdown study, these data support the ability of to regulate the gene. The gene functions as a deubiquitinating enzyme involved in DNA repair, protein positioning, and the assembly of the Golgi apparatus during mitotic signaling. The transcriptional regulation of VCPIP1 by the gene could implicate MYBL1 in these processes, which might contribute to tumor processes in TNBC. Although both genes are involved in cell cycle regulatory mechanisms, converging signaling mechanisms have not been identified. In a separate study, we performed sequence alignment of the MYBL1 transcript variants and identified an exon unique to the canonical variant. Probes that specifically target the unique exon show that the exon is overexpressed in tumor cell lines compared to non-tumor breast cells. We are classifying this unique MYBL1 exon as a tumor-associated exon.
先前的数据表明,在MDA-MB-231细胞系中敲低该基因会导致另一基因表达下调。此外,在一些相同的三阴性乳腺癌患者样本中,这两个基因共表达且表达失调。我们提出这两个基因的共表达归因于MYBL1转录因子对该基因的调控。我们在VCPIP1起始位点上游鉴定出MYBL1转录因子结合位点,并表明MYBL1蛋白可与在VCPIP1启动子区域鉴定出的序列结合。结合敲低研究的结果,这些数据支持该基因调控另一基因的能力。该基因作为一种去泛素化酶,在有丝分裂信号传导过程中参与DNA修复、蛋白质定位和高尔基体组装。该基因对VCPIP1的转录调控可能使MYBL1参与这些过程,这可能有助于三阴性乳腺癌的肿瘤发生过程。尽管这两个基因都参与细胞周期调控机制,但尚未确定其趋同的信号传导机制。在另一项研究中,我们对MYBL1转录变体进行了序列比对,并鉴定出一个典型变体特有的外显子。特异性靶向该独特外显子的探针显示,与非肿瘤乳腺细胞相比,该外显子在肿瘤细胞系中过表达。我们将这个独特的MYBL1外显子归类为肿瘤相关外显子。