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1.
J Biol Chem ; 299(6): 104718, 2023 06.
Article in English | MEDLINE | ID: mdl-37062417

ABSTRACT

Loss-of-function variants of vacuolar protein sorting proteins VPS33B and VPS16B (VIPAS39) are causative for arthrogryposis, renal dysfunction, and cholestasis syndrome, where early lethality of patients indicates that VPS33B and VPS16B play essential cellular roles. VPS33B is a member of the Sec1-Munc18 protein family and thought to facilitate vesicular fusion via interaction with soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complexes, like its paralog VPS33A in the homotypic fusion and vacuole sorting complex. VPS33B and VPS16B are known to associate, but little is known about the composition, structure, or function of the VPS33B-VPS16B complex. We show here that human VPS33B-VPS16B is a high molecular weight complex, which we expressed in yeast to perform structural, composition, and stability analysis. Circular dichroism data indicate VPS33B-VPS16B has a well-folded α-helical secondary structure, and size-exclusion chromatography-multiangle light scattering revealed a molecular weight of ∼315 kDa. Quantitative immunoblotting indicated a VPS33B:VPS16B ratio of 2:3. Expression of arthrogryposis, renal dysfunction, and cholestasis syndrome-causing VPS33B missense variants showed L30P disrupts complex formation but not S243F or H344D. Truncated VPS16B (amino acids 143 to 316) was sufficient to form a complex with VPS33B. Small-angle X-ray scattering and negative-staining EM revealed a two-lobed shape for VPS33B-VPS16B. Avidin tagging indicated that each lobe contains a VPS33B molecule, and they are oriented in opposite directions. We propose a structure for VPS33B-VPS16B that allows the VPS33B at each end to interact with separate SNARE bundles and/or SNAREpins, plus associated membrane components. These observations reveal the only known potentially bidirectional Sec1-Munc18 protein complex.


Subject(s)
Munc18 Proteins , Renal Insufficiency , Humans , SNARE Proteins/genetics , Syndrome , Vesicular Transport Proteins/genetics , Vesicular Transport Proteins/metabolism
2.
Clin Imaging ; 44: 74-78, 2017.
Article in English | MEDLINE | ID: mdl-28482336

ABSTRACT

Spinal subdural abscess is a rare central nervous system infection with just over a hundred cases reported. It is much less common than spinal epidural abscess. While most case reports have focused on route of infection and treatment options, there have not been any reports that focused on the unique MRI findings of spinal subdural abscess. We describe a case of spinal subdural abscess diagnosed by MRI in a 33-year-old male who presented with headaches after undergoing a microdiscectomy procedure, and review the underlying anatomic features of the spinal meninges which produce the appearance of a spinal subdural abscess.


Subject(s)
Abscess/diagnosis , Diskectomy/adverse effects , Empyema, Subdural/diagnosis , Lumbar Vertebrae/surgery , Meninges/pathology , Spinal Cord Diseases/diagnosis , Abscess/complications , Adult , Empyema, Subdural/complications , Headache/diagnosis , Headache/etiology , Humans , Infections/complications , Magnetic Resonance Imaging/methods , Male , Meninges/diagnostic imaging , Spinal Cord Diseases/complications
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