首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >Highly conserved motifs within the large Sec7 ARF guanine nucleotide exchange factor GBF1 target it to the Golgi and are critical for GBF1 activity
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Highly conserved motifs within the large Sec7 ARF guanine nucleotide exchange factor GBF1 target it to the Golgi and are critical for GBF1 activity

机译:大型Sec7 ARF鸟嘌呤核苷酸交换因子GBF1中的高度保守基序将其靶向高尔基体对于GBF1活性至关重要

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摘要

Cellular life requires the activation of the ADP-ribosylation factors (ARFs) by Golgi brefeldin A-resistant factor 1 (GBF1), a guanine nucleotide exchange factor (GEF) with a highly conserved catalytic Sec7 domain (Sec7d). In addition to the Sec7d, GBF1 contains other conserved domains whose functions remain unclear. Here, we focus on HDS2 (homology downstream of Sec7d 2) domain because the L1246R substitution within the HDS2 α-helix 5 of the zebrafish GBF1 ortholog causes vascular hemorrhaging and embryonic lethality (13). To dissect the structure/function relationships within HDS2, we generated six variants, in which the most conserved residues within α-helices 1, 2, 4, and 6 were mutated to alanines. Each HDS2 mutant was assessed in a cell-based “replacement” assay for its ability to support cellular functions normally supported by GBF1, such as maintaining Golgi homeostasis, facilitating COPI recruitment, supporting secretion, and sustaining cellular viability. We show that cells treated with the pharmacological GBF1 inhibitor brefeldin A (BFA) and expressing a BFA-resistant GBF1 variant with alanine substitutions of RDR1168 or LF1266 are compromised in Golgi homeostasis, impaired in ARF activation, unable to sustain secretion, and defective in maintaining cellular viability. To gain insight into the molecular mechanism of this dysfunction, we assessed the ability of each GBF1 mutant to target to Golgi membranes and found that mutations in RDR1168 and LF1266 significantly decrease targeting efficiency. Thus, these residues within α-helix 2 and α-helix 6 of the HDS2 domain in GBF1 are novel regulatory determinants that support GBF1 cellular function by impacting the Golgi-specific membrane association of GBF1.
机译:细胞生命需要高尔基布雷菲德菌素A抵抗因子1(GBF1)激活鸟嘌呤核苷酸交换因子(GEF)并具有高度保守的催化Sec7结构域(Sec7d)来激活ADP-核糖基化因子(ARF)。除了Sec7d,GBF1还包含其他保守域,其功能尚不清楚。在这里,我们专注于HDS2(Sec7d 2下游的同源性)域,因为斑马鱼GBF1直系同源物的HDS2α-螺旋5中的L1246R取代会引起血管出血和胚胎致死性(13)。为了剖析HDS2中的结构/功能关系,我们生成了6个变体,其中α-螺旋1、2、4和6中最保守的残基突变为丙氨酸。在基于细胞的“置换”分析中评估了每个HDS2突变体支持正常由GBF1支持的细胞功能的能力,例如维持高尔基体稳态,促进COPI募集,支持分泌和维持细胞活力。我们显示,用药理学GBF1抑制剂布雷菲德菌素A(BFA)处理并表达具有RDR1168或LF1266的丙氨酸取代的BFA耐药性GBF1变体的细胞在高尔基稳态中受损,在ARF激活中受损,无法维持分泌,并且在维持中存在缺陷细胞活力。为了深入了解这种功能障碍的分子机制,我们评估了每个GBF1突变体靶向高尔基膜的能力,发现RDR1168和LF1266中的突变显着降低了靶向效率。因此,GBF1中HDS2域的α-螺旋2和α-螺旋6中的这些残基是新型调节决定簇,它们通过影响GBF1的高尔基体特异性膜结合而支持GBF1细胞功能。

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