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1.
Amyloid ; 31(2): 86-94, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38206120

ABSTRACT

BACKGROUND: AL amyloidosis (AL) results from the misfolding of immunoglobulin light chains (IG LCs). Aim of this study was to comprehensively analyse kappa LC sequences from AL patients in comparison with multiple myeloma (MM). OBJECTIVE: We analysed IGKV/IGKJ usage and associated organ tropism and IGKV1/D-33 in terms of mutational analysis and theoretical biochemical properties. MATERIAL AND METHODS: cDNA and bulk RNA sequencing of the LCs of AL and MM patients. RESULTS: We studied 41 AL and 83 MM patients showing that IGKV1 was most expressed among kappa AL and MM, with higher frequency in AL (80% vs. 53%, p = .002). IGKV3 was underrepresented in AL (10% vs. 30%, p = .014). IGKJ2 was more commonly used in AL than in MM (39% vs. 29%). Patients with IGKV1/D-33 were associated with heart involvement (75%, p = .024). IGKV1/D-33-segments of AL had a higher mutation count (AL = 12.0 vs. MM = 10.0). FR3 and CDR3 were most frequently mutated in both, with a median mutation count in FR3 being the highest (AL = 4.0; MM = 3.5) and one mutation hotspot (FR3 (83I)) for IGKV1/D-33/IGKJ2 was associated with cardiac involvement. CONCLUSION: This study confirmed that germline usage has an influence on AL amyloidosis risk and organ involvement.


Subject(s)
Immunoglobulin Light-chain Amyloidosis , Immunoglobulin kappa-Chains , Multiple Myeloma , Humans , Multiple Myeloma/genetics , Male , Immunoglobulin Light-chain Amyloidosis/genetics , Immunoglobulin Light-chain Amyloidosis/pathology , Female , Middle Aged , Immunoglobulin kappa-Chains/genetics , Aged , Mutation
2.
FEBS J ; 290(17): 4256-4267, 2023 09.
Article in English | MEDLINE | ID: mdl-37097223

ABSTRACT

Light chain amyloidosis (AL) is one of the most common forms of systemic amyloidosis and is caused by the deposition of insoluble fibrils derived from misfolded and aggregated immunoglobulin light chains (LC). To uncover the causes leading to this aggregation, we compared AL LC sequences with those of patients with the related disease multiple myeloma (MM), which do not aggregate in insoluble fibrils in vivo. IGLV2-14 is one of the most common AL-associated IGLV subfamilies. Here, we analysed IGLV2-14 LC sequences of 13 AL and eight MM patients in detail. We found that AL-associated LCs presented a lower median mutation count (7.0 vs. 11.5 in MM; P = 0.045), as well as an overall composition of less charged amino acids than MM LCs. However, we did not find a mutation that was present in ≥ 50% of the AL and not in the MM sequences. Furthermore, we did not find a significant difference in the isoelectric point (pI) in general, suggesting similar stability of the LCs in AL and MM. However, the subgroup of patients without a detectable heavy chain stood out. Surprisingly, they are characterized by an increase in mutation count (median 7.0 vs. 5.5) and pI (median 7.82 vs. 6.44, P = 0.043). In conclusion, our data suggest that the amount of mutations and the introduction of charges play a crucial role in AL fibril formation, as well as the absence or presence of a potential heavy chain binding partner.


Subject(s)
Amyloidosis , Immunoglobulin Light-chain Amyloidosis , Multiple Myeloma , Humans , Immunoglobulin Light-chain Amyloidosis/genetics , Multiple Myeloma/genetics , Amyloidosis/genetics , Amyloidosis/metabolism , Immunoglobulin Light Chains/genetics , Immunoglobulin Light Chains/metabolism , Mutation , Amyloid/chemistry
3.
Amyloid ; 30(1): 27-37, 2023 Mar.
Article in English | MEDLINE | ID: mdl-35792725

ABSTRACT

BACKGROUND: Systemic AL amyloidosis arises from the misfolding of patient-specific immunoglobulin light chains (LCs). Potential drivers of LC amyloid formation are mutational changes and post-translational modifications (PTMs). However, little information is available on the exact primary structure of the AL proteins and their precursor LCs. OBJECTIVE: We analyse the exact primary structure of AL proteins extracted from 10 λ AL amyloidosis patients and their corresponding precursor LCs. MATERIALS AND METHODS: By cDNA sequencing of the precursor LC genes in combination with mass spectrometry of the AL proteins, the exact primary structure and PTMs were determined. This information was used to analyse their biochemical properties. RESULTS: All AL proteins comprise the VL and a small part of the CL with a common C-terminal truncation region. While all AL proteins retain the conserved native disulphide bond of the VL, we found no evidence for presence of other common PTMs. The analysis of the biochemical properties revealed that the isoelectric point of the VL is significantly increased due to introduced mutations. CONCLUSION: Our data imply that mutational changes influence the surface charge properties of the VL and that common proteolytic processes are involved in the generation of the cleavage sites of AL proteins.


Subject(s)
Amyloidosis , Immunoglobulin Light-chain Amyloidosis , Humans , Immunoglobulin Light-chain Amyloidosis/genetics , Amyloidosis/genetics , Amyloidosis/metabolism , Immunoglobulin Light Chains/metabolism , Amyloid/genetics , Amyloid/metabolism , Mass Spectrometry , Abdominal Fat/metabolism
4.
EJHaem ; 3(4): 1377-1380, 2022 Nov.
Article in English | MEDLINE | ID: mdl-36467828

ABSTRACT

Due to differences in the protein folding mechanisms, it is exceedingly rare for amyloid light chain (AL) amyloidosis and monoclonal gammopathy of renal significance (MGRS) to coexist. We herein report the first case of concurrent AL amyloidosis and a subclass of MGRS, light chain proximal tubulopathy (LCPT). The 53-year-old female was diagnosed with smoldering myeloma immunoglobulin G kappa and AL amyloidosis with deposits in fat and gastrointestinal tissue. The kidney biopsy did not show amyloid deposits but electron microscopy revealed the presence of LCPT with crystal formation in proximal tubular epithelial cells. This case illustrates the complex pathophysiology of protein deposition in monoclonal gammopathies.

5.
PLoS One ; 17(2): e0264407, 2022.
Article in English | MEDLINE | ID: mdl-35213605

ABSTRACT

Light chain amyloidosis is one of the most common forms of systemic amyloidosis. The disease is caused by the misfolding and aggregation of immunoglobulin light chains to insoluble fibrils. These fibrils can deposit in different tissues and organs such as heart and kidney and cause organ impairments that define the clinical presentation. In this study, we present an overview of IGLV-IGLJ and IGLC germline utilization in 85 patients classified in three clinically important subgroups with dominant cardiac, renal as well as cardiac and renal involvement. We found that IGLV3 was the most frequently detected IGLV-family in patients with dominant cardiac involvement, whereas in renal patients IGLV1 were most frequently identified. For patients with dominant heart and kidney involvement IGLV6 was the most frequently detected IGLV-family. In more detailed analysis IGLV3-21 was observed as the most dominant IGLV-subfamily for patients with dominant heart involvement and IGLV1-44 as the most frequent IGLV-subfamily in the group of patients with dominant kidney involvement. For patients with dominant heart and kidney involvement IGLV6-57 was the most frequently detected IGLV-subfamily. Additionally, we were able to show an exclusive linkage between IGLJ1 and IGLC1 as well as between IGLJ2 and IGLC2 in the fully assembled IGL mRNA.


Subject(s)
Immunoglobulin Light-chain Amyloidosis , Immunoglobulin lambda-Chains , Kidney/metabolism , Myocardium/metabolism , Adult , Aged , Aged, 80 and over , Female , Humans , Immunoglobulin Light-chain Amyloidosis/genetics , Immunoglobulin Light-chain Amyloidosis/metabolism , Immunoglobulin lambda-Chains/genetics , Immunoglobulin lambda-Chains/metabolism , Male , Middle Aged , Organ Specificity
6.
Nat Commun ; 12(1): 6434, 2021 11 05.
Article in English | MEDLINE | ID: mdl-34741031

ABSTRACT

Systemic AL amyloidosis is a rare disease that is caused by the misfolding of immunoglobulin light chains (LCs). Potential drivers of amyloid formation in this disease are post-translational modifications (PTMs) and the mutational changes that are inserted into the LCs by somatic hypermutation. Here we present the cryo electron microscopy (cryo-EM) structure of an ex vivo λ1-AL amyloid fibril whose deposits disrupt the ordered cardiomyocyte structure in the heart. The fibril protein contains six mutational changes compared to the germ line and three PTMs (disulfide bond, N-glycosylation and pyroglutamylation). Our data imply that the disulfide bond, glycosylation and mutational changes contribute to determining the fibril protein fold and help to generate a fibril morphology that is able to withstand proteolytic degradation inside the body.


Subject(s)
Immunoglobulin Light-chain Amyloidosis/metabolism , Cryoelectron Microscopy , Glycosylation , Immunoglobulin Light-chain Amyloidosis/genetics , Mutation , Protein Conformation , Protein Folding
7.
Cells ; 8(4)2019 04 01.
Article in English | MEDLINE | ID: mdl-30939867

ABSTRACT

A hallmark of ageing is the redistribution of body fat. Particularly, subcutaneous fat decreases paralleled by a decrease of skin collagen I are typical for age-related skin atrophy. In this paper, we hypothesize that collagen I may be a relevant molecule stimulating the differentiation of adipose-derived stem cells (ASCs) into adipocytes augmenting subcutaneous fat. In this context lipogenesis, adiponectin, and collagen I receptor expression were determined. Freshly isolated ASCs were characterized by stemness-associated surface markers by FACS analysis and then transdifferentiated into adipocytes by specific medium supplements. Lipogenesis was evaluated using Nile Red staining and documented by fluorescence microscopy or quantitatively measured by using a multiwell spectrofluorometer. Expression of adiponectin was measured by real-time RT-PCR and in cell-free supernatants by ELISA, and expression of collagen I receptors was observed by western blot analysis. It was found that supports coated with collagen I promote cell adhesion and lipogenesis of ASCs. Interestingly, a reverse correlation to adiponectin expression was observed. Moreover, we found upregulation of the collagen receptor, discoidin domain-containing receptor 2; receptors of the integrin family were absent or downregulated. These findings indicate that collagen I is able to modulate lipogenesis and adiponectin expression and therefore may contribute to metabolic dysfunctions associated with ageing.


Subject(s)
Adipocytes/cytology , Adipose Tissue/cytology , Collagen Type I/pharmacology , Stem Cells/metabolism , Adipocytes/drug effects , Adipocytes/metabolism , Adiponectin/genetics , Adiponectin/metabolism , Cell Adhesion/drug effects , Cells, Cultured , Humans , Integrin alpha2beta1/metabolism , Lipogenesis/drug effects , RNA, Messenger/genetics , RNA, Messenger/metabolism , Receptors, Collagen/metabolism , Stem Cells/cytology , Stem Cells/drug effects
8.
Biophys J ; 111(1): 19-24, 2016 Jul 12.
Article in English | MEDLINE | ID: mdl-27410730

ABSTRACT

Many aspects of chromatin biology are influenced by the nuclear compartment in which a locus resides, from transcriptional regulation to DNA repair. Further, the dynamic and variable localization of a particular locus across cell populations and over time makes analysis of a large number of cells critical. As a consequence, robust and automatable methods to measure the position of individual loci within the nuclear volume in populations of cells are necessary to support quantitative analysis of nuclear position. Here, we describe a three-dimensional membrane reconstruction approach that uses fluorescently tagged nuclear envelope or endoplasmic reticulum membrane marker proteins to precisely map the nuclear volume. This approach is robust to a variety of nuclear shapes, providing greater biological accuracy than alternative methods that enforce nuclear circularity, while also describing nuclear position in all three dimensions. By combining this method with established approaches to reconstruct the position of diffraction-limited chromatin markers-in this case, lac Operator arrays bound by lacI-GFP-the distribution of loci positions within the nuclear volume with respect to the nuclear periphery can be quantitatively obtained. This stand-alone image analysis pipeline should be of broad practical utility for individuals interested in various aspects of chromatin biology, while also providing, to our knowledge, a new conceptual framework for investigators who study organelle shape.


Subject(s)
Imaging, Three-Dimensional , Nuclear Envelope/metabolism , Animals , Endoplasmic Reticulum/metabolism , Fluorescent Dyes/metabolism , Mice , Models, Biological , NIH 3T3 Cells , Schizosaccharomyces/cytology
9.
Nat Commun ; 6: 7159, 2015 Jun 15.
Article in English | MEDLINE | ID: mdl-26074052

ABSTRACT

The nuclear lamina is thought to be the primary mechanical defence of the nucleus. However, the lamina is integrated within a network of lipids, proteins and chromatin; the interdependence of this network poses a challenge to defining the individual mechanical contributions of these components. Here, we isolate the role of chromatin in nuclear mechanics by using a system lacking lamins. Using novel imaging analyses, we observe that untethering chromatin from the inner nuclear membrane results in highly deformable nuclei in vivo, particularly in response to cytoskeletal forces. Using optical tweezers, we find that isolated nuclei lacking inner nuclear membrane tethers are less stiff than wild-type nuclei and exhibit increased chromatin flow, particularly in frequency ranges that recapitulate the kinetics of cytoskeletal dynamics. We suggest that modulating chromatin flow can define both transient and long-lived changes in nuclear shape that are biologically important and may be altered in disease.


Subject(s)
Cell Nucleus/metabolism , Chromatin/metabolism , Nuclear Envelope/metabolism , Cell Nucleus/ultrastructure , Chromatin/ultrastructure , Microscopy, Electron, Scanning , Nuclear Envelope/ultrastructure , Nuclear Lamina , Optical Tweezers , Schizosaccharomyces
10.
J Cell Biol ; 209(3): 403-18, 2015 May 11.
Article in English | MEDLINE | ID: mdl-25963820

ABSTRACT

The linker of nucleoskeleton and cytoskeleton (LINC) complex allows cells to actively control nuclear position by coupling the nucleus to the cytoplasmic cytoskeleton. Nuclear position responds to the formation of intercellular adhesions through coordination with the cytoskeleton, but it is not known whether this response impacts adhesion function. In this paper, we demonstrate that the LINC complex component SUN2 contributes to the mechanical integrity of intercellular adhesions between mammalian epidermal keratinocytes. Mice deficient for Sun2 exhibited irregular hair follicle intercellular adhesions, defective follicle structure, and alopecia. Primary mouse keratinocytes lacking Sun2 displayed aberrant nuclear position in response to adhesion formation, altered desmosome distribution, and mechanically defective adhesions. This dysfunction appeared rooted in a failure of Sun2-null cells to reorganize their microtubule network to support coordinated intercellular adhesion. Together, these results suggest that cross talk between the nucleus, cytoskeleton, and intercellular adhesions is important for epidermal tissue integrity.


Subject(s)
Cell Nucleus/metabolism , Cytoskeleton/metabolism , Epidermis/metabolism , Keratinocytes/metabolism , Membrane Proteins/metabolism , Telomere-Binding Proteins/metabolism , Animals , Cell Adhesion/physiology , Cell Nucleus/genetics , Cytoskeleton/genetics , Epidermal Cells , Hair Follicle/cytology , Hair Follicle/metabolism , Keratinocytes/cytology , Membrane Proteins/genetics , Mice , Mice, Knockout , Telomere-Binding Proteins/genetics
11.
Anal Chem ; 83(11): 4288-95, 2011 Jun 01.
Article in English | MEDLINE | ID: mdl-21561066

ABSTRACT

The structure and stability of single- and double-stranded DNA hybrids immobilized on gold are strongly affected by nucleotide-surface interactions. To systematically analyze the effects of these interactions, a set of model DNA hybrids was prepared in conformations that ranged from end-tethered double-stranded to directly adsorbed single-stranded (hairpins) and characterized by surface plasmon resonance (SPR) imaging, X-ray photoelectron spectroscopy (XPS), fluorescence microscopy, and near edge X-ray absorption fine structure (NEXAFS) spectroscopy. The stabilities of these hybrids were evaluated by exposure to a series of stringency rinses in solutions of successively lower ionic strength and by competitive hybridization experiments. In all cases, directly adsorbed DNA hybrids are found to be significantly less stable than either free or end-tethered hybrids. The surface-induced weakening and the associated asymmetry in hybridization responses of the two strands forming hairpin stems are most pronounced for single-stranded hairpins containing blocks of m adenine (A) nucleotides and n thymine (T) nucleotides, which have high and low affinity for gold surfaces, respectively. The results allow a qualitative scale of relative stabilities to be developed for DNA hybrids on surfaces. Additionally, the results suggest a route for selectively weakening portions of immobilized DNA hybrids and for introducing asymmetric hybridization responses by using sequence design to control nucleotide-surface interactions--a strategy that may be used in advanced biosensors and in switches or other active elements in DNA-based nanotechnology.


Subject(s)
DNA, Single-Stranded/chemistry , Gold/chemistry , Nucleic Acid Hybridization , Osmolar Concentration , Photoelectron Spectroscopy , Surface Plasmon Resonance
12.
Anal Chem ; 82(7): 2803-10, 2010 Apr 01.
Article in English | MEDLINE | ID: mdl-20196546

ABSTRACT

Quantitative and reproducible data can be obtained from surface-based DNA sensors if variations in the conformation and surface density of immobilized single-stranded DNA capture probes are minimized. Both the conformation and surface density can be independently and deterministically controlled by taking advantage of the preferential adsorption of adenine nucleotides (dA) on gold, as previously demonstrated using a model system in Opdahl, A.; Petrovykh, D. Y.; Kimura-Suda, H.; Tarlov, M. J.; Whitman, L. J. Proc. Natl. Acad. Sci. U.S.A. 2007, 104, 9-14. Here, we describe the immobilization and subsequent hybridization properties of a 15-nucleotide DNA probe sequence that has additional m adenine nucleotides, (dA)(m), at the 5' end. Quantitative analysis of immobilization and hybridization for these probes indicates that the (dA)(m) block preferentially adsorbs on gold, forcing the probe portion of the strand to adopt an upright conformation suited for efficient hybridization. In addition, a wide range of probe-to-probe lateral spacing can be achieved by coimmobilizing the probe DNA with a lateral spacer, a strand of k adenine nucleotides, (dA)(k). Altering either the length or relative concentration of the (dA)(k) spacers added during probe immobilization controls the average surface density of probes; the density of probes, in turn, systematically modulates their hybridization with solution targets.


Subject(s)
DNA Probes/chemistry , Nucleic Acid Hybridization/methods , Adenine/chemistry , DNA, Single-Stranded/chemistry , Gold/chemistry , Photoelectron Spectroscopy
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