Clark Kathleen M, Jenkins Jermaine L, Fedoriw Nadia, Dumont Mark E
Department of Pediatrics, University of Rochester Medical Center, Rochester, New York, 14642.
Department of Biochemistry and Biophysics, University of Rochester Medical Center, Rochester, New York, 14642.
Protein Sci. 2017 Feb;26(2):242-257. doi: 10.1002/pro.3074. Epub 2016 Nov 11.
The function and localization of proteins and peptides containing C-terminal "CaaX" (Cys-aliphatic-aliphatic-anything) sequence motifs are modulated by post-translational attachment of isoprenyl groups to the cysteine sulfhydryl, followed by proteolytic cleavage of the aaX amino acids. The zinc metalloprotease ZMPSTE24 is one of two enzymes known to catalyze this cleavage. The only identified target of mammalian ZMPSTE24 is prelamin A, the precursor to the nuclear scaffold protein lamin A. ZMPSTE24 also cleaves prelamin A at a second site 15 residues upstream from the CaaX site. Mutations in ZMPSTE24 result in premature-aging diseases and inhibition of ZMPSTE24 activity has been reported to be an off-target effect of HIV protease inhibitors. We report here the expression (in yeast), purification, and crystallization of human ZMPSTE24 allowing determination of the structure to 2.0 Å resolution. Compared to previous lower resolution structures, the enhanced resolution provides: (1) a detailed view of the active site of ZMPSTE24, including water coordinating the catalytic zinc; (2) enhanced visualization of fenestrations providing access from the exterior to the interior cavity of the protein; (3) a view of the C-terminus extending away from the main body of the protein; (4) localization of ordered lipid and detergent molecules at internal and external surfaces and also projecting through fenestrations; (5) identification of water molecules associated with the surface of the internal cavity. We also used a fluorogenic assay of the activity of purified ZMPSTE24 to demonstrate that HIV protease inhibitors directly inhibit the human enzyme in a manner indicative of a competitive mechanism.
含有C末端“CaaX”(半胱氨酸-脂肪族-脂肪族-任意氨基酸)序列基序的蛋白质和肽的功能及定位,是通过异戊二烯基团翻译后连接到半胱氨酸巯基上,随后对aaX氨基酸进行蛋白水解切割来调节的。锌金属蛋白酶ZMPSTE24是已知催化这种切割的两种酶之一。哺乳动物ZMPSTE24唯一已确定的靶标是核纤层蛋白A的前体前层粘连蛋白A。ZMPSTE24还在CaaX位点上游15个残基处的第二个位点切割前层粘连蛋白A。ZMPSTE24中的突变会导致早衰疾病,并且据报道,HIV蛋白酶抑制剂对ZMPSTE24活性的抑制是一种脱靶效应。我们在此报告了人ZMPSTE24的表达(在酵母中)、纯化及结晶,从而能够确定其结构,分辨率达到2.0 Å。与之前分辨率较低的结构相比,更高的分辨率提供了:(1)ZMPSTE24活性位点的详细视图,包括与催化锌配位的水;(2)对开窗结构的可视化增强,这些开窗结构提供了从蛋白质外部到内部腔的通道;(3)蛋白质C末端从蛋白质主体延伸出去的视图;(4)有序脂质和去污剂分子在内表面和外表面的定位,以及它们通过开窗结构的突出;(5)与内部腔表面相关的水分子的鉴定。我们还使用了一种荧光法检测纯化的ZMPSTE24的活性,以证明HIV蛋白酶抑制剂以竞争性机制的方式直接抑制人源酶。