Chemical genetic screens reveal defective lysosomal trafficking as synthetic lethal with NF1 loss

化学遗传筛查显示溶酶体运输缺陷会导致 NF1 丢失,从而造成合成致死

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作者:Stephanie J Bouley, Andrew V Grassetti, Robert J Allaway, Matthew D Wood, Helen W Hou, India R Burdon Dasbach, William Seibel, Jimmy Wu, Scott A Gerber, Konstantin H Dragnev, James A Walker, Yolanda Sanchez

Abstract

Neurofibromatosis type 1, a genetic disorder caused by pathogenic germline variations in NF1, predisposes individuals to the development of tumors, including cutaneous and plexiform neurofibromas (CNs and PNs), optic gliomas, astrocytomas, juvenile myelomonocytic leukemia, high-grade gliomas and malignant peripheral nerve sheath tumors (MPNSTs), which are chemotherapy- and radiation-resistant sarcomas with poor survival. Loss of NF1 also occurs in sporadic tumors, such as glioblastoma (GBM), melanoma, breast, ovarian and lung cancers. We performed a high-throughput screen for compounds that were synthetic lethal with NF1 loss, which identified several leads, including the small molecule Y102. Treatment of cells with Y102 perturbed autophagy, mitophagy and lysosome positioning in NF1-deficient cells. A dual proteomics approach identified BLOC-one-related complex (BORC), which is required for lysosome positioning and trafficking, as a potential target of Y102. Knockdown of a BORC subunit using siRNA recapitulated the phenotypes observed with Y102 treatment. Our findings demonstrate that BORC might be a promising therapeutic target for NF1-deficient tumors.

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