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A germline mutation of the KIF1B beta gene on 1p36 in a family with neural and nonneural tumors.

机译:神经和非神经肿瘤家族中1p36处KIF1B beta基因的种系突变。

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Recently, the KIF1B beta gene on 1p36, a region commonly deleted in neural crest cancers, was found to be a proapoptotic factor for sympathetic precursors. KIF1B beta mutations were detected in pheochromocytomas and neuroblastomas, two sympathetic lineage tumors, suggesting a role for this gene in cancer. Here, we studied five individuals from a three-generation cancer-prone family with a KIF1B beta germline variant and seven of their tumors, both of neural crest and nonneural origin. Genetic studies including sequencing, copy number analysis and fluorescence in situ-hybridization (FISH) showed retention of both KIF1B beta alleles in all neural crest-derived tumors in this family, consistent with haploinsufficiency or methylation of the wild-type allele. In contrast, the lung adenocarcinoma from one mutation carrier had somatic loss of the wild-type allele in agreement with a classical two-hit inactivation. Global transcription analysis of KIF1B beta mutant pheochromocytomas revealed that these tumors are transcriptionally related to pheochromocytomas with RET and NF1 mutations but independent from SDH- and VHL-associated tumors. Furthermore, KIF1B beta-mutant tumors are uniquely enriched for pathways related to glutamate metabolism and the oxidative stress response. Our data start to delineate the signals that are disrupted by KIF1B beta dysfunction in pheochromocytomas and suggest that loss of this gene may also be permissive to the development of nonneural crest malignancies. This may imply the existence of a tissue-specific gene dosage requirement for its tumorigenesis.
机译:最近,发现在神经rest癌中通常缺失的1p36区域的KIF1Bβ基因是交感性前体的促凋亡因子。在嗜铬细胞瘤和成神经细胞瘤(两个交感神经系肿瘤)中检测到KIF1Bβ突变,表明该基因在癌症中的作用。在这里,我们研究了具有KIF1B beta种系变异的三代癌症易感家庭中的五个人,以及他们的七个神经rest和非神经源性肿瘤。包括测序,拷贝数分析和荧光原位杂交(FISH)在内的遗传研究表明,该家族的所有神经c衍生肿瘤均保留了两个KIF1Bβ等位基因,与野生型等位基因的单倍剂量不足或甲基化相一致。相反,来自一个突变携带者的肺腺癌与经典的两次打击灭活相一致,具有野生型等位基因的体细胞损失。 KIF1Bβ突变嗜铬细胞瘤的全球转录分析表明,这些肿瘤与具有RET和NF1突变的嗜铬细胞瘤在转录上相关,但与SDH和VHL相关的肿瘤无关。此外,KIF1Bβ突变型肿瘤富含与谷氨酸代谢和氧化应激反应有关的途径。我们的数据开始描述在嗜铬细胞瘤中被KIF1Bβ功能障碍破坏的信号,并表明该基因的丢失也可能允许非神经ne恶性肿瘤的发展。这可能意味着存在针对其肿瘤发生的组织特异性基因剂量需求。

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