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Biomedical subjects

E J Steenbergen

Publications and source records attributed to E J Steenbergen.

At least 19 recordsLinked to original sources

Glomerular involution in children with frequently relapsing minimal change nephrotic syndrome: an unrecognized form of glomerulosclerosis?

Global glomerulosclerosis can be divided in the vascular (obsolescent) type and the glomerulopathic (solidified) type. In biopsies from children with recurrent nephrotic syndrome owing to minimal change nephropathy (MCN), we noticed small, globally sclerosed glomeruli that appeared to be distinct from global glomerulosclerosis. These small sclerosed glomeruli are best described as involuted glomeruli. We have characterized these involuted glomeruli in detail. We studied biopsies of 18 children (11 male, 7 female) with frequently relapsing MCN and evaluated possible explanatory variables. The involuted glomeruli can be differentiated from the other types of global glomerulosclerosis. Most notable is the presence of vital podocytes and parietal epithelial cells, which have retained their staining characteristics, in between the matrix, and the absence of periglomerular and tubulo-interstitial fibrosis. We observed involuted glomeruli in 12 out of 18 biopsies; the median percentage of involuted glomeruli was 6% (range 0-33%). The percentage of involuted glomeruli correlated with age at renal biopsy and the interval between onset of disease and time of renal biopsy, but not with gender, age at onset of disease, or prednisone dose. Multivariate analysis revealed that the interval between onset of disease and time of renal biopsy was the only independent predictor. In conclusion, glomerular involution is a special form of global glomerulosclerosis. The absence of periglomerular and tubulo-interstitial fibrosis suggests a different pathogenesis. Glomerular involution is a slow process. The clinical data suggest that involution is related to the duration of the disease process.

Child↗

Proliferating cells in HIV and pamidronate-associated collapsing focal segmental glomerulosclerosis are parietal epithelial cells.

Collapsing focal segmental glomerulosclerosis (cFSGS) is characterized by hyperplasia of glomerular epithelial cells. In a mouse model of FSGS and in a patient with recurrent idiopathic FSGS, we identified the proliferating cells as parietal epithelial cells (PECs). In the present study, we have evaluated the origin of the proliferating cells in cFSGS associated with human immunodeficiency virus (HIV) and pamidronate. We performed a detailed study of glomerular lesions in biopsies of two patients with HIV-associated cFSGS and a nephrectomy specimen of a patient with pamidronate-associated cFSGS. Glomeruli were studied by serial sectioning using light and electron microscopy and immunohistochemistry to determine the epithelial cell phenotype. We used Synaptopodin, vascular endothelial growth factor, and CD10 as podocyte markers, CK8 and PAX2 as PEC markers and Ki-67 as marker of cell proliferation. The newly deposited extracellular matrix was characterized using antiheparan sulfate single-chain antibodies. The proliferating cells were negative for the podocyte markers, but stained positive for the PEC markers and the cell proliferation marker Ki-67. The proliferating PAX-2 and CK8 positive cells that covered the capillary tuft were always in continuity with PAX-2/CK8 positive cells lining Bowman's capsule. The matrix deposited by these proliferating cells stained identically to Bowman's capsule. Our study demonstrates that PECs proliferate in HIV and pamidronate-associated cFSGS. Our data do not support the concept of the proliferating, dedifferentiated podocyte.

AIDS-Associated Nephropathy↗

Lessons from studies on focal segmental glomerulosclerosis: an important role for parietal epithelial cells?

Glomerular diseases are caused by multiple mechanisms. Progressive glomerular injury is characterized by the development of segmental or global glomerulosclerosis independent of the nature of the underlying renal disease. Most studies on glomerular disease focus on the constituents of the filtration barrier (podocytes, glomerular basement membrane (GBM), endothelial cells) or the mesangial cells. Little attention is given to the epithelial cells lining Bowman's capsule, the so called parietal epithelial cells (PECs). This 'lack of attention' is partly explained by the presumed 'passive' function of PECs, which are large, flattened cells that cover Bowman's capsule in a single cell layer and form a barrier between the ultrafiltrate and the periglomerular interstitium, in normal glomerular physiology. A more important reason has been the lack of an established primary role for the parietal epithelium in glomerular diseases. However, in recent years, several studies have demonstrated that PECs are involved in extracapillary proliferation. In addition, PECs can become highly active, proliferating cells, expressing many growth factors, chemokines, cytokines, and their receptors. It was recently demonstrated that PECs also play a part in the development of focal segmental glomerulosclerosis (FSGS). This review summarises current knowledge of the PEC, with emphasis on the role of PECs in the development of FSGS.

Animals↗

Sirolimus-associated heavy proteinuria in a renal transplant recipient: evidence for a tubular mechanism.

Sirolimus is a new and potent immunosuppressive agent. Recently, increased proteinuria has been recognized as an important complication. However, the mechanism thereof has remained unclear. We describe a patient who received sirolimus as standard therapy after living donor kidney transplantation. Within 10 days the patient developed a severe proteinuria that disappeared completely after substituting tacrolimus for sirolimus. Renal biopsy disclosed normal glomeruli even without effacement of the podocytic foot processes. Using FITC labeled anti-albumin antibodies we noted complete absence of albumin in the proximal tubules, whereas an abundant albumin staining was observed in a control patient with a comparable level of proteinuria due to a recurrence of focal segmental glomerulosclerosis after transplantation. Our data suggest that sirolimus can induce severe proteinuria, and that reduced tubular protein reabsorption contributes to the protein loss.

Biopsy↗

Fibrillary glomerulonephritis in a patient with type 2 diabetes mellitus.

We report a 62-year-old man with documented type 2 diabetes mellitus and hypertension, who presented with a rapid deterioration in renal function. The sudden decrease in renal function in this well-controlled diabetic patient prompted us to consider a nondiabetic and nonhypertensive cause. The urinary sediment showed a glomerular haematuria suggestive of glomerulonephritis. A diagnosis of fibrillary glomerulonephritis was made on renal biopsy. Fibrillary glomerulonephritis is a rarely diagnosed disease with clinical manifestations such as proteinuria, microscopic haematuria, nephrotic syndrome and impairment of renal function. A diagnosis of fibrillary glomerulonephritis can only be made by electronmicroscopy of the renal tissue. In this case report the spectrum of this disease is reviewed.

Biopsy↗

Idiopathic focal segmental glomerulosclerosis: a favourable prognosis in untreated patients?

BACKGROUND: Patients with focal segmental glomerulosclerosis (FSGS) are considered to have a poor prognosis and spontaneous remissions are seldom reported. However, FSGS is not a single disease entity. Our aim was to describe the clinical course in initially untreated patients with recently diagnosed idiopathic FSGS. METHODS: This was a retrospective study of patients with a diagnosis of FSGS by histology, who fulfilled the following criteria: proteinuria >3.5 g/day, normal renal function, duration of proteinuria or hypertension of less than one year, normal-sized kidneys, no underlying renal disease, and a negative family history. Renal biopsies were reviewed without knowledge of the clinical course. RESULTS: Twenty patients (13 male, 7 female) fulfilled the study criteria. Median age was 49.3 (range 21.8 to 73.0) years, serum creatinine 90 +/- 20 micromol/l, proteinuria 10.0 +/- 5.5 g/day and serum albumin 24 +/- 6 g/l. After a median follow-up of 9.4 (2.1-18.6) years, 13 patients (65%) were in remission of proteinuria. Renal function deterioration occurred in seven patients, and prompted treatment in four of them. The ten-year death-censored renal survival was 89%. Renal function deterioration and remission rate could be predicted by selectivity index, serum albumin at three months after renal biopsy and the percentage of glomeruli with segmental sclerosis. CONCLUSION: Focal glomerulosclerosis is not a single disease. Case definition using strict clinical criteria identifies a subgroup of patients with idiopathic FSGS who have a good prognosis. In the majority of these patients immunosuppressive therapy is not warranted.

Adult↗

Mitochondrial tRNALeu(UUR) mutation in a patient with steroid-resistant nephrotic syndrome and focal segmental glomerulosclerosis.

BACKGROUND: The heterogeneity of mitochondrial cytopathies is characteristic for this group of disorders, which preferentially affect the muscle and nerve system. The A3243G transition in the tRNA(Leu(UUR)) gene has been associated with slowly progressive forms of focal segmental glomerulosclerosis (FSGS). Here we present a patient who developed a severe nephrotic syndrome during her first pregnancy, which persisted after delivery, and proved resistant to immunosuppressive therapy. A sister of our patient had developed diabetes mellitus. We analysed the DNA for the presence of the mitochondrial DNA (mtDNA) A3243G transition. METHODS: DNA was isolated from peripheral blood leukocytes and urine sediments. Polymerase chain reaction was performed to amplify the mtDNA. Restriction enzyme analysis was used to detect the presence of the A3243G transition. Quantitative analysis of the A3243G mutation was done using the pyrosequencing technique. RESULTS: Quantitative analysis revealed a proportion of mutated mtDNA of 30% in the leukocytes and 68% in the urine sediments of the proband. On further analysis, we also found the transition in the mother, the diabetic sister and the daughter of the proband. CONCLUSION: MtDNA abnormalities can cause a steroid-resistant nephrotic syndrome, histologically characterized by FSGS. Physicians should be especially mindful of mitochondrial abnormalities when hearing loss, diabetes mellitus or neuromuscular disorders are present in the patient or family members.

Adult↗

Variable heavy chain gene analysis of follicular lymphomas: correlation between heavy chain isotype expression and somatic mutation load.

The expansion of follicular lymphomas (FLs) resembles, both morphologically and functionally, normal germinal center B-cell growth. The tumor cells proliferate in networks of follicular dendritic cells and are believed to be capable of somatic hypermutation and isotype switching. To investigate the relation between somatic mutation and heavy chain isotype expression, we analyzed the variable heavy (V(H)) chain genes of 30 FL samples of different isotypes. The V(H) genes of the FLs were heavily mutated (29.3 mutations on average). In addition, isotype-switched lymphomas contained more somatic mutations than immunoglobulin M-positive lymphomas (33.8 mutations per V(H) gene versus 23.0, respectively). In all but one of the FLs, the ratios of replacement versus silent mutations in the framework regions were low, independent of the absolute number of somatic mutations and the level of intraclonal variation. Analysis of relapse samples of 4 FLs showed no obvious increase in somatic mutation load in most FLs and a decrease in intraclonal variation in time. In 3 of 4 cases, we obtained evidence for selection of certain subclones, rather than clonal evolution. Our findings question if intraclonal variation is always a reflection of ongoing somatic hypermutation. This may have implications for the concept of antigen-driven lymphomagenesis. (Blood. 2000;95:2922-2929)

Adult↗

Rearrangement status of the malignant cell determines type of secondary IgH rearrangement (V-replacement or V to DJ joining) in childhood B precursor acute lymphoblastic leukemia.

Immunoglobulin heavy chain (IgH) oligoclonality in childhood B precursor acute lymphoblastic leukemia (ALL) as determined by Southern analysis is found in 30-50% of patients and has been shown to be the result of ongoing IgH rearrangement (mostly V(H)-replacement and V(H) to D-J(H) joining) after malignant transformation. It is unknown however, what determines the type of secondary rearrangement. Also the biological basis of the variable degree of oligoclonality observed in childhood ALL is poorly understood. We analyzed in detail the IgH rearrangement status of the leukemic cells for a random panel of 18 childhood B precursor ALL patients by polymerase chain reaction (PCR)/sequencing analysis and by Southern analysis. By Southern analysis 10/18 (55.6%) patients were considered oligoclonal and 8/18 (44.4%) monoclonal. In contrast, by PCR minor clonal rearrangements were detected in 14/18 (77.8%) patients. V(H)-replacement was found in 7/14 patients, V(H) to D-J(H) joining in 6/14 patients and an unusual type of secondary rearrangement, V(H)-D to J(H) joining, in one patient. Only a single type of secondary rearrangement was detected in each patient. The type of secondary rearrangement (V(H)-replacement or V(H) to D-J(H) joining) depended on the rearrangement status (VDJ/VDJ or VDJ/DJ, respectively) of the dominant leukemic clone as determined by Southern analysis. We found that in addition to a more 'advanced' IgH rearrangement status patients with V(H)-replacements also have a more 'advanced' TCRdelta rearrangement status, which possibly reflects exposure of both the IgH locus and the TCRdelta locus to recombinase activity in a preleukemic clone. Finally, we investigated a putative relationship between oligoclonality by Southern analysis and S-phase fraction of the leukemic cell population. We found a significantly lower percentage cells in S-phase for oligoclonal patients as compared to monoclonal patients. Our data add to the understanding of ongoing rearrangement of antigen receptor loci in childhood ALL and have implications for the monitoring of minimal residual disease by PCR.

Adolescent↗

PCR-positivity in harvested bone marrow predicts relapse after transplantation with autologous purged bone marrow in children in second remission of precursor B-cell acute leukaemia.

Purging of autologous bone marrow (BM) grafts of children in second remission after a relapse of precursor B acute lymphoblastic leukaemia (ALL) in the BM has been carried out in our laboratory since 1987, initially by complement mediated cell lysis. This protocol was extended by performing an immunorosette depletion before lysis with complement. The aim of the present study was to assess by polymerase chain reaction the presence of residual leukaemic cells in the BM grafts before and after purging. The results were then correlated to clinical outcome. In 24/28 patients a PCR product was obtained by amplification of IgH and/or TcR junctional regions. BM before purging was available for analysis in 13 patients. We found that leukaemic cells could be detected in 8/13 (62%) of these grafts before purging . All these eight patients experienced a relapse, regardless of whether the purging procedure had been successful (defined as achievement of PCR-negativity) or not. In contrast, none of the five patients with PCR-negative grafts before purging relapsed (P = 0.0008). One patient died due to transplant-related toxicity. Of the remaining 23 patients, nine patients received a PCR-positive BM graft after purging. All these nine patients experienced a relapse as compared to 6/14 whose BM was PCR-negative after purging (P = 0.0072). Two of eight PCR-positive BM grafts could be purged to PCR-negativity. Thus, improvements both in treatment of leukaemia and in purging efficacy are still needed.

Adolescent↗

[Children with acute lymphoblastic leukemia: prognostic significance of polymerase-chain-reaction analysis of minimal residual disease].

OBJECTIVE: Determination of the usefulness of polymerase chain reaction (PCR) for the detection of minimal residual disease (MRD) in bone marrow in children suffering from progenitor-B cell acute lymphoblastic leukaemia during and after treatment. DESIGN: Descriptive. SETTING: Emma's Children's Hospital, Academic Medical Centre, University of Amsterdam and Central Laboratory of the Dutch Red Cross, Amsterdam. METHOD: Of 50 children suffering from progenitor-B cell ALL, stored bone marrow samples and bone marrow slides were investigated: 328 bone marrow samples were analysed by PCR for IgH/TCR delta; 34 patients were analysed at the end of induction therapy. Follow-up period was 20 to 133 months. RESULTS: Twenty-two patients stayed in continuous complete remission (CCR), 28 patients experienced a recurrence (REC). Reduction of tumour mass was higher in the CCR group. At the end of induction therapy 2/18 CCR patients and 10/16 REC patients were PCR positive (p = 0.005). PCR positivity was not related with known prognostic factors. After recurrence 6/8 patients, who became PCR negative, stayed in remission. All patients who stayed positive after treatment for their recurrence died from leukaemia (p = 0.006). All children who were only temporary PCR negative suffered a recurrence. CONCLUSION: Analysis of MRD by means of PCR on bone marrow samples during and after treatment for progenitor-B cell ALL is of prognostic importance.

Biomarkers, Tumor↗

Triple immunofluorescence staining for prediction of relapse in childhood precursor B acute lymphoblastic leukaemia.

In this study we describe a fast and sensitive method using three-colour immunofluorescence for the detection of cells with phenotypes that are rare in normal bone marrow (BM) but occur frequently in children with precursor B acute lymphoblastic leukaemia. We show that, in the first year after initiation of therapy, in 17/18 patients (10 patients were analysed after first diagnosis and nine patients after first BM relapse; one patient was analysed on both occasions) the percentage of CD10+ CD19+ cells and CD20- CD22+ cells in the CD34+ cell population indicated the likelihood of relapse. A suppression of cells expressing these phenotypes after initiation of therapy was followed by an outgrowth of normal precursor B cells after 12 months. Therefore this early test for impending relapse (which occurred 10-28 months after starting chemotherapy) was only applicable in the first year after beginning the treatment. However, despite this predictive value, comparison of fluorescence data with PCR results obtained from the same BM sample indicated that only a subpopulation of the CD34+ CD10+ CD19+ and CD34+ CD20- CD22+ cells above the determined threshold value represented malignant cells. A large prospective study to confirm the predictive value of this three-colour immunofluorescence assay is warranted.

Burkitt Lymphoma↗

Clonal evolution of immunoglobulin heavy chain rearrangements in childhood B-precursor acute lymphoblastic leukemia after engraftment in SCID mice.

We grafted childhood B-precursor acute lymphoblastic leukemia (ALL) bone marrow (BM) cells into mice with severe combined immunodeficiency (SCID), in order to study the clonal evolution of immunoglobulin heavy chain (IgH) rearrangements in the absence of selective pressure by chemotherapy. BM cells from nine patients (six diagnosis samples and three relapse samples) were intravenously injected into SCID mice (three mice for each patient). All mice injected with cells from four patients developed a leukemia-like illness 12-40 weeks after injection. By PCR, new subclones that were the result of ongoing IgH rearrangement according to the mechanism operative in the injected cell populations (VH-replacement or VH to D-JH joining) were detected in the engrafted cell populations for all four patients. Subclones were mouse-specific, suggesting that subclone formation is a continuous process. Southern analysis after engraftment was unaltered as compared to the injected cells for one patient and revealed changes indicative of altered clonal composition for three patients. For two patients the observed changes possibly reflect the initial engraftment of a limited number of cells and occurred without changes in other parameters of the engrafted cell population, such as time needed for the development of leukemia, macroscopic organ involvement, immunophenotype and S-phase fraction. In one patient, we demonstrated the selective outgrowth of only a single cell type present at diagnosis, as characterized by IgH rearrangements. Our data show that evolution of clonal IgH rearrangements in B-precursor ALL may occur without the selective pressure of chemotherapy. Additionally, in some patients subclones present at diagnosis, as defined by IgH rearrangements, also possess different biological properties.

Animals↗

Frequent ongoing T-cell receptor rearrangements in childhood B-precursor acute lymphoblastic leukemia: implications for monitoring minimal residual disease.

Crosslineage T-cell receptor delta (TCR delta) rearrangements are widely used as tumor markers for the follow up of minimal residual disease in childhood B-precursor acute lymphoblastic leukemia (ALL) by polymerase chain reaction (PCR). The major drawback of this approach is the risk of false-negative results due to clonal evolution. We investigated the stability of V delta 2D delta 3 rearrangements in a group of 56 childhood B-precursor ALL patients by PCR and Southern blot analysis. At the PCR level, V delta 2D delta 3-to-J alpha rearranged subclones (one pathway for secondary TCR delta recombination) were demonstrated in 85.2% of V delta 2D delta 3-positive patients tested, which showed that small subclones are present in the large majority of patients despite apparently monoclonal TCR delta Southern blot patterns. Sequence analysis of V delta 2D delta 3J alpha rearrangements showed a biased J alpha gene usage, with HAPO5 and J alpha F in 26 of 32 and 6 of 32 clones, respectively. Comparison of V delta 2D delta 3 rearrangement status between diagnosis and first relapse showed differences in seven of eight patients studied. In contrast, from first relapse onward, no clonal changes were observed in six patients studied. To investigate the occurrence of crosslineage TCR delta rearrangements in normal B and T cells, fluorescence-activated cell sorter-sorted peripheral blood CD19+/CD3- and CD19-/CD3+ cell populations from three healthy donors were analyzed. V delta 2D delta 3 rearrangements were detected at low frequencies in both B and T cells, which suggests that V delta 2-to-D delta 3 joining also occurs during normal B-cell differentiation. A model for crosslineage TCR delta rearrangements in B-precursor ALL is deduced that explains the observed clonal changes between diagnosis and relapse and is compatible with multistep leukemogenesis of B-precursor ALL.

Base Sequence↗

Prolonged persistence of PCR-detectable minimal residual disease after diagnosis or first relapse predicts poor outcome in childhood B-precursor acute lymphoblastic leukemia.

The follow up of minimal residual disease (MRD) in childhood B-precursor ALL by polymerase chain reaction (PCR) may be of help for further stratification of treatment protocols, to improve outcome. However, the clinical relevance of this approach has yet to be defined. We report the retrospective follow-up of MRD in bone marrow (BM) samples from 50 childhood B-precursor ALL patients by IgH/TCR delta PCR. Twenty-two patients remained in continuous complete remission (median follow-up 61 months), and 28 experienced relapse (median follow-up 75 months). Initial regression of MRD on therapy correlated with outcome. At the end of induction therapy 2/18 (11.1%) patients from the CCR group were PCR positive vs 10/16 (62.5%) from the 'relapse' group (P = 0.005). The presence of PCR detectable MRD predicted event-free survival independent of standard clinical and cytogenetical parameters. Also subsequent to first BM relapse, a correlation between MRD regression and outcome was observed. Six of eight patients who became PCR negative in the time period between relapse and bone marrow transplantation are in CCR, whereas 7/7 patients who remained PCR positive in this time period died (P = 0.006). In approximately 70% of evaluable patients, clinical relapse was preceded by recurrence of detectable MRD at time intervals of 3-18 months earlier and the recurrence of PCR positivity after a period of negativity was always followed by overt relapse. At relapse, the combined use of IgH and TCR delta probes reduced false negativity caused by clonal evolution to approximately 10%. This study shows that the evolution of PCR detectable MRD is an independent predictor of outcome.

Adolescent↗

IgH/TCR delta PCR oligonucleotide liquid hybridization, a fast and sensitive assay for monitoring minimal residual disease in childhood B-precursor ALL.

The detection of minimal residual disease (MRD) in childhood B-precursor acute lymphoblastic leukemia (ALL) by polymerase chain reaction (PCR) may turn out to be a powerful tool in the evaluation and guidance of therapy. Most previously described techniques are highly sensitive but also too laborious for application in a routine setting. Here we describe a technique based on the determination of IgH VHDJH and TCR V delta 2D delta 3 junctional regions by PCR/cycle sequencing analysis and hybridization of junctional region oligonucleotide probes in a standard liquid hybridization (LH) assay. We systematically analyzed the applicability of this simplified approach for the monitoring of MRD in a large patient group. IgH VHDJH and TCR V delta 2D delta 3 junctional regions were amplified from presentation bone marrow samples obtained from 53 childhood B-precursor ALL patients. The combined approach allowed the identification of at least one tumor marker for 49/53 (92.5%) of patients. A total of 75 oligonucleotide probes (54 DJH, 21 V delta 2D delta 3) was tested in the LH assay. Sensitivity range was 10(-2)-10(-5) and 10(-4)-10(-5) for DJH and V delta 2D delta 3 junctional region probes, respectively. A sensitivity of at least one malignant cell in 10(4) normal cells was obtained for 84.8% of evaluable patients, applying on average 1.1 IgH and 0.47 TCR delta probes per patient. Comparison to a method based on the use of initial PCR product as clone-specific probe showed that oligonucleotide LH was one log more sensitive in six of nine patients tested. The presented technique allows the monitoring of MRD with acceptable sensitivities in over 90% of childhood B-precursor ALL patients. Moreover, the technique is suitable for prospective patient studies in a routine setting as it is fast, reproducible and makes use of a standard hybridization protocol for different oligonucleotide probes.

Base Sequence↗

B precursor acute lymphoblastic leukemia third complementarity-determining regions predominantly represent an unbiased recombination repertoire: leukemic transformation frequently occurs in fetal life.

To determine whether the ALL (acute lymphoblastic leukemia) CDR3 (third complementarity-determining region) repertoire represents the recombination repertoire, or shows evidence of selectional processes inherent to normal B cell differentiation or malignant transformation, we analyzed 68 ALL CDR3 regions and included 127 previously published sequences in the analyses. We found no evidence of selection prior to malignant transformation as recombination was random with 1/3 "in frame" and 2/3 "out of frame" joinings and usage of all three D reading frames was observed. D and JH gene segments were predominantly unmutated which allowed a detailed analysis of gene usage and rearrangement characteristics. JH4 and JH6 usage (both 32.2%) was significantly different (p = 0.005) from that observed in peripheral B lymphocytes. D gene family usage roughly represented D gene family size with the exception of the DXP and DA/K family which were over- and underrepresented (p = < or = 0.05), respectively. D-D fusions were found in 26.2% of CDR3 regions. If less stringent criteria were applied DIR homology was found in 40/65 sequences, suggesting the frequent involvement of DIR gene segments in human CDR3 formation. The rearranged D genes were evenly distributed over the D locus, suggesting that D recombination is a predominantly random process, independent of physical location at the locus. Also, there was no correlation between JH gene usge and physical location of the rearranged D gene segment, which excludes a major contribution of the DJH replacement recombination mechanism. In 36.1% of CDR3 regions N-nucleotides at the DJH junction were absent. This frequency is higher than observed for peripheral B lymphocytes. It is suggested that for a number of ALL the initial transformational event took place in early fetal life. We conclude that ALL CDR3 sequences show no evidence of selection prior to malignant transformation, nor of extensive changes subsequent to malignant transformation.

Age Factors↗