Division of Hematology, Brigham & Women's Hospital, Harvard Medical School, Boston, MA 02115.
INSERM U1149, CNRS ERL 8252, Centre de Recherche sur l'inflammation, Université Paris Diderot, Site Bichat, Sorbonne Paris Cité, 75018 Paris, France.
Proc Natl Acad Sci U S A. 2017 Sep 19;114(38):E8045-E8052. doi: 10.1073/pnas.1700632114. Epub 2017 Sep 5.
Loss-of-function mutations in genes for heme biosynthetic enzymes can give rise to congenital porphyrias, eight forms of which have been described. The genetic penetrance of the porphyrias is clinically variable, underscoring the role of additional causative, contributing, and modifier genes. We previously discovered that the mitochondrial AAA+ unfoldase ClpX promotes heme biosynthesis by activation of δ-aminolevulinate synthase (ALAS), which catalyzes the first step of heme synthesis. CLPX has also been reported to mediate heme-induced turnover of ALAS. Here we report a dominant mutation in the ATPase active site of human CLPX, p.Gly298Asp, that results in pathological accumulation of the heme biosynthesis intermediate protoporphyrin IX (PPIX). Amassing of PPIX in erythroid cells promotes erythropoietic protoporphyria (EPP) in the affected family. The mutation in inactivates its ATPase activity, resulting in coassembly of mutant and WT protomers to form an enzyme with reduced activity. The presence of low-activity CLPX increases the posttranslational stability of ALAS, causing increased ALAS protein and ALA levels, leading to abnormal accumulation of PPIX. Our results thus identify an additional molecular mechanism underlying the development of EPP and further our understanding of the multiple mechanisms by which CLPX controls heme metabolism.
血红素生物合成酶基因突变可导致先天性卟啉症,目前已描述了其中 8 种形式。卟啉症的遗传外显率在临床上存在差异,这突显了其他致病、促成和修饰基因的作用。我们之前发现,线粒体 AAA+解旋酶 ClpX 通过激活δ-氨基乙酰丙酸合酶(ALAS)促进血红素生物合成,ALAS 催化血红素合成的第一步。CLPX 也被报道介导血红素诱导的 ALAS 周转。在这里,我们报告了人类 CLPX 的 ATP 酶活性位点中的一个显性突变,p.Gly298Asp,导致血红素生物合成中间产物原卟啉 IX(PPIX)的病理性积累。卟啉在红细胞中的积累会导致受影响家族的红细胞生成性原卟啉症(EPP)。该突变使 CLPX 的 ATP 酶活性失活,导致突变体和 WT 亚基的共组装,形成活性降低的酶。低活性 CLPX 的存在增加了 ALAS 的翻译后稳定性,导致 ALAS 蛋白和 ALA 水平增加,从而导致 PPIX 的异常积累。我们的研究结果因此确定了 EPP 发展的另一种分子机制,并进一步加深了我们对 CLPX 控制血红素代谢的多种机制的理解。